• This record comes from PubMed

From Foreshock 30-Second Waves to Magnetospheric Pc3 Waves

. 2025 ; 221 (2) : 26. [epub] 20250307

Status PubMed-not-MEDLINE Language English Country Netherlands Media print-electronic

Document type Journal Article, Review

Ultra-low frequency waves, with periods between 1-1000 s, are ubiquitous in the near-Earth plasma environment and play an important role in magnetospheric dynamics and in the transfer of electromagnetic energy from the solar wind to the magnetosphere. A class of those waves, often referred to as Pc3 waves when they are recorded from the ground, with periods between 10 and 45 s, are routinely observed in the dayside magnetosphere. They originate from the ion foreshock, a region of geospace extending upstream of the quasi-parallel portion of Earth's bow shock. There, the interaction between shock-reflected ions and the incoming solar wind gives rise to a variety of waves, and predominantly fast-magnetosonic waves with a period typically around 30 s. The connection between these waves upstream of the shock and their counterparts observed inside the magnetosphere and on the ground was inferred already early on in space observations due to similar properties, thereby implying the transmission of the waves across near-Earth space, through the shock and the magnetopause. This review provides an overview of foreshock 30-second/Pc3 waves research from the early observations in the 1960s to the present day, covering the entire propagation pathway of these waves, from the foreshock to the ground. We describe the processes at play in the different regions of geospace, and review observational, theoretical and numerical works pertaining to the study of these waves. We conclude this review with unresolved questions and upcoming opportunities in both observations and simulations to further our understanding of these waves.

See more in PubMed

Ala-Lahti MM, Kilpua EKJ, Dimmock AP, Osmane A, Pulkkinen T, Souček J (2018) Statistical analysis of mirror mode waves in sheath regions driven by interplanetary coronal mass ejection. Ann Geophys 36(3):793–808

Ala-Lahti M, Kilpua EKJ, Souček J, Pulkkinen TI, Dimmock AP (2019) Alfvén ion cyclotron waves in sheath regions driven by interplanetary coronal mass ejections. J Geophys Res Space Phys 124(6):3893–3909

Ala-Lahti M, Dimmock AP, Pulkkinen TI, Good SW, Yordanova E, Turc L, Kilpua EKJ (2021) Transmission of an ICME sheath into the Earth’s magnetosheath and the occurrence of traveling foreshocks. J Geophys Res Space Phys 126(12):e29896

Anderson BJ, Engebretson MJ (1995) Relative intensity of toroidal and compressional Pc 3-4 wave power in the dayside outer magnetosphere. J Geophys Res 100(A6):9591–9604

Anderson BJ, Fuselier SA (1993) Magnetic pulsations from 0.1 to 4.0 Hz and associated plasma properties in the Earth’s subsolar magnetosheath and plasma depletion layer. J Geophys Res 98(A2):1461–1480

Anderson BJ, Fuselier SA, Gary SP, Denton RE (1994) Magnetic spectral signatures in the Earth’s magnetosheath and plasma depletion layer. J Geophys Res 99(A4):5877–5892

Andrés N, Meziane K, Mazelle C, Bertucci C, Gómez D (2015) The ULF wave foreshock boundary: Cluster observations. J Geophys Res Space Phys 120(6):4181–4193

Angelopoulos V (2008) The THEMIS mission. Space Sci Rev 141(1–4):5–34

Archer M, Horbury TS, Lucek EA, Mazelle C, Balogh A, Dandouras I (2005) Size and shape of ULF waves in the terrestrial foreshock. J Geophys Res Space Phys 110(A5):A05208

Archer MO, Hietala H, Hartinger MD, Plaschke F, Angelopoulos V (2019) Direct observations of a surface eigenmode of the dayside magnetopause. Nat Commun 10(1):615 PubMed PMC

Archer MO, Southwood DJ, Hartinger MD, Rastaetter L, Wright AN (2022) How a realistic magnetosphere alters the polarizations of surface, fast magnetosonic, and Alfvén waves. J Geophys Res Space Phys 127(2):e30032 PubMed PMC

Argo HV, Asbridge JR, Bame SJ, Hundhausen AJ, Strong IB (1967) Observations of solar wind plasma changes across the bow shock. J Geophys Res 72(7):1989–1994

Arthur CW, McPherron RL, Hughes WJ (1977) A statistical study of Pc 3 magnetic pulsations at synchronous orbit, ats 6. J Geophys Res 82(7):1149–1157

Asséo E, Berthomieu G (1970) Amplification of hydromagnetic waves through the Earth’s bow shock. Planet Space Sci 18(8):1143–1152

Baker KB, Engebretson MJ, Rodger AS, Arnoldy RL (1998) The coherence scale length of band-limited Pc3 pulsations in the ionosphere. Geophys Res Lett 25(13):2357–2360

Balasis G, Papadimitriou C, Daglis IA, Pilipenko V (2015) Ulf wave power features in the topside ionosphere revealed by swarm observations. Geophys Res Lett 42(17):6922–6930

Bale SD, Balikhin MA, Horbury TS, Krasnoselskikh VV, Kucharek H, Möbius E, Walker SN, Balogh A, Burgess D, Lembège B, Lucek EA, Scholer M, Schwartz SJ, Thomsen MF (2005) Quasi-perpendicular shock structure and processes. Space Sci Rev 118(1–4):161–203

Baransky LN, Borovkov JE, Gokhberg MB, Krylov SM, Troitskaya VA (1985) High-resolution method of direct measurement of the magnetic-field lines eigen frequencies. Planet Space Sci 33(12):1369–1374

Barnes A (1970) Theory of generation of bow-shock-associated hydromagnetic waves in the upstream interplanetary medium. Cosm Electrodyn 1:90–114

Battarbee M, Ganse U, Pfau-Kempf Y, Turc L, Brito T, Grandin M, Koskela T, Palmroth M (2020) Non-locality of Earth’s quasi-parallel bow shock: injection of thermal protons in a hybrid-Vlasov simulation. Ann Geophys 38(3):625–643

Belcher JW, Davis LJ (1971) Large-amplitude Alfvén waves in the interplanetary medium, 2. J Geophys Res 76(16):3534

Bellan PM (2016) Revised single-spacecraft method for determining wave vector k and resolving space-time ambiguity. J Geophys Res Space Phys 121(9):8589–8599

Belmont G, Reberac F, Rezeau L (1995) Resonant amplification of magnetosheath MHD fluctuations at the magnetopause. Geophys Res Lett 22(3):295–298

Benkhoff J, Murakami G, Baumjohann W, Besse S, Bunce E, Casale M, Cremonese G, Glassmeier KH, Hayakawa H, Heyner D, Hiesinger H, Huovelin J, Hussmann H, Iafolla V, Iess L, Kasaba Y, Kobayashi M, Milillo A, Mitrofanov IG, Montagnon E, Novara M, Orsini S, Quemerais E, Reininghaus U, Saito Y, Santoli F, Stramaccioni D, Sutherland O, Thomas N, Yoshikawa I, Zender J (2021) BepiColombo - mission overview and science goals. Space Sci Rev 217(8):90

Bier EA, Owusu N, Engebretson MJ, Posch JL, Lessard MR, Pilipenko VA (2014) Investigating the IMF cone angle control of Pc3-4 pulsations observed on the ground. J Geophys Res Space Phys 119(3):1797–1813

Blanco-Cano X, Schwartz S (1997a) Kinetic theory mode properties: application to low frequency waves in the ion foreshock. Adv Space Res 20(4):707–711

Blanco-Cano X, Schwartz SJ (1997b) Identification of low-frequency kinetic wave modes in the Earth’s ion foreshock. Ann Geophys 15(3):273–288

Blanco-Cano X, Le G, Russell CT (1999) Identification of foreshock waves with 3-s periods. J Geophys Res 104(A3):4643–4656

Blanco-Cano X, Omidi N, Russell CT (2006) Macrostructure of collisionless bow shocks: 2. ULF waves in the foreshock and magnetosheath. J Geophys Res Space Phys 111(A10):A10205

Blanco-Cano X, Omidi N, Russell CT (2009) Global hybrid simulations: foreshock waves and cavitons under radial interplanetary magnetic field geometry. J Geophys Res Space Phys 114(A1):A01216

Blanco-Cano X, Kajdič P, Aguilar-Rodríguez E, Russell CT, Jian LK, Luhmann JG (2016) Interplanetary shocks and foreshocks observed by STEREO during 2007-2010. J Geophys Res Space Phys 121(2):992–1008

Bland EC, McDonald AJ, Menk FW, Devlin JC (2014) Multipoint visualization of ULF oscillations using the super dual auroral radar network. Geophys Res Lett 41(18):6314–6320

Bolshakova OV, Troitskaia VA (1984) Relationship between the high-latitude maximum of Pc3 intensity and the daytime cusp. Geomagn Aeron 24:776–779

Bol’shakova OV, Troitskaya VA (1968) Relationship between the direction of the interplanetary magnetic field and steady oscillation conditions. Dokl Akad Nauk SSSR 180(343)

Bonifazi C, Moreno G (1981a) Reflected and diffuse ions backstreaming from the Earth’s bow shock 1. Basic properties. J Geophys Res 86(A6):4397–4404

Bonifazi C, Moreno G (1981b) Reflected and diffuse ions backstreaming from the Earth’s bow shock 2. Origin. J Geophys Res 86(A6):4405–4414

Brito T, Hudson MK, Kress B, Paral J, Halford A, Millan R, Usanova M (2015) Simulation of ULF wave-modulated radiation belt electron precipitation during the 17 March 2013 storm. J Geophys Res Space Phys 120(5):3444–3461

Burch JL, Torbert RB, Phan TD, Chen L-J, Moore TE, Ergun RE, Eastwood JP, Gershman DJ, Cassak PA, Argall MR, Wang S, Hesse M, Pollock CJ, Giles BL, Nakamura R, Mauk BH, Fuselier SA, Russell CT, Strangeway RJ, Drake JF, Shay MA, Khotyaintsev YV, Lindqvist P-A, Marklund G, Wilder FD, Young DT, Torkar K, Goldstein J, Dorelli JC, Avanov LA, Oka M, Baker DN, Jaynes AN, Goodrich KA, Cohen IJ, Turner DL, Fennell JF, Blake JB, Clemmons J, Goldman M, Newman D, Petrinec SM, Trattner KJ, Lavraud B, Reiff PH, Baumjohann W, Magnes W, Steller M, Lewis W, Saito Y, Coffey V, Chandler M (2016) Electron-scale measurements of magnetic reconnection in space. Science 352(6290) PubMed

Burgess D (1989) Cyclic behavior at quasi-parallel collisionless shocks. Geophys Res Lett 16(5):345–348

Burgess D (1995) Foreshock-shock interaction at collisionless quasi-parallel shocks. Adv Space Res 15(8–9):159–169

Burgess D, Lucek EA, Scholer M, Bale SD, Balikhin MA, Balogh A, Horbury TS, Krasnoselskikh VV, Kucharek H, Lembège B, Möbius E, Schwartz SJ, Thomsen MF, Walker SN (2005) Quasi-parallel shock structure and processes. Space Sci Rev 118(1–4):205–222

Burgess D, Möbius E, Scholer M (2012) Ion acceleration at the Earth’s bow shock. Space Sci Rev 173(1–4):5–47

Burlaga L, Sittler E, Mariani F, Schwenn R (1981) Magnetic loop behind an interplanetary shock: Voyager, Helios, and IMP 8 observations. J Geophys Res 86(A8):6673–6684

Cao M, McPherron RL, Russell CT (1994) Statistical study of ULF wave occurrence in the dayside magnetosphere. J Geophys Res 99(A5):8731–8754

Cao JB, Fu HS, Zhang TL, Reme H, Dandouras I, Lucek E (2009) Direct evidence of solar wind deceleration in the foreshock of the Earth. J Geophys Res Space Phys 114(A2):A02207

Chen L, Hasegawa A (1974) A theory of long-period magnetic pulsations: 1. Steady state excitation of field line resonance. J Geophys Res 79(7):1024–1032

Chen L-J, Ng J, Omelchenko Y, Wang S (2021a) Magnetopause reconnection and indents induced by foreshock turbulence. Geophys Res Lett 48(11):e93029 PubMed PMC

Chen L-J, Wang S, Ng J, Bessho N, Tang J-M, Fung SF, Le G, Gershman D, Giles B, Russell CT, Torbert R, Burch J (2021b) Solitary magnetic structures at quasi-parallel collisionless shocks: formation. Geophys Res Lett 48(1):e90800

Chi PJ, Russell CT, Le G (1994) Pc 3 and Pc 4 activity during a long period of low interplanetary magnetic field cone angle as detected across the Institute of Geological Sciences array. J Geophys Res 99(A6):11127–11140

Chisham G, Lester M, Milan SE, Freeman MP, Bristow WA, Grocott A, McWilliams KA, Ruohoniemi JM, Yeoman TK, Dyson PL, Greenwald RA, Kikuchi T, Pinnock M, Rash JPS, Sato N, Sofko GJ, Villain JP, Walker ADM (2007) A decade of the Super Dual Auroral Radar Network (SuperDARN): scientific achievements, new techniques and future directions. Surv Geophys 28(1):33–109

Chugunova OM, Pilipenko VA, Engebretson M (2004) Appearance of quasi-monochromatic Pc3–4 pulsations in the polar cap. Geomagn Aeron 44:42–48

Chugunova OM, Pilipenko VF, Engebretson M, Rodger AS (2006) Statistical characteristics of the spatial distribution of Pc3-4 geomagnetic pulsations at high latitudes in the Antarctic regions. Geomagn Aeron 46(1):64–73

Claudepierre SG, Wiltberger M, Elkington SR, Lotko W, Hudson MK (2009) Magnetospheric cavity modes driven by solar wind dynamic pressure fluctuations. Geophys Res Lett 36(13):L13101

Claudepierre SG, Hudson MK, Lotko W, Lyon JG, Denton RE (2010) Solar wind driving of magnetospheric ULF waves: field line resonances driven by dynamic pressure fluctuations. J Geophys Res Space Phys 115(A11):A11202

Clausen LBN, Yeoman TK, Fear RC, Behlke R, Lucek EA, Engebretson MJ (2009) First simultaneous measurements of waves generated at the bow shock in the solar wind, the magnetosphere and on the ground. Ann Geophys 27(1):357–371

Collinson GA, Wilson LB, Sibeck DG, Shane N, Zhang TL, Moore TE, Coates AJ, Barabash S (2012) Short large-amplitude magnetic structures (SLAMS) at Venus. J Geophys Res Space Phys 117(A10):A10221

Collinson G, Sibeck D, Omidi N, Grebowsky J, Halekas J, Mitchell D, Espley J, Zhang T, Persson M, Futaana Y, Jakosky B (2017) Spontaneous hot flow anomalies at Mars and Venus. J Geophys Res Space Phys 122(10):9910–9923

Collinson G, Wilson LB, Omidi N, Sibeck D, Espley J, Fowler CM, Mitchell D, Grebowsky J, Mazelle C, Ruhunusiri S, Halekas J, Frahm R, Zhang T, Futaana Y, Jakosky B (2018) Solar wind induced waves in the skies of Mars: ionospheric compression, energization, and escape resulting from the impact of ultralow frequency magnetosonic waves generated upstream of the Martian bow shock. J Geophys Res Space Phys 123(9):7241–7256

Coroniti FV, Kennel CF (1970) Electron precipitation pulsations. J Geophys Res 75(7):1279–1289

Cranmer SR, Gibson SE, Riley P (2017) Origins of the ambient solar wind: implications for space weather. Space Sci Rev 212(3–4):1345–1384

Cummings WD, O’Sullivan RJ, Coleman PJ (1969) Standing Alfvé waves in the magnetosphere. J Geophys Res 74(3):778–793

Czaykowska A, Bauer TM, Treumann RA, Baumjohann W (2001) Magnetic field fluctuations across the Earth’s bow shock. Ann Geophys 19(3):275–287

De Keyser J, Roth M, Reberac F, Rezeau L, Belmont G (1999) Resonant amplification of MHD waves in realistic subsolar magnetopause configurations. J Geophys Res 104(A2):2399–2410

De Lauretis M, Francia P, Regi M, Villante U, Piancatelli A (2010) Pc3 pulsations in the polar cap and at low latitude. J Geophys Res Space Phys 115(A11)

de Wit TD, Krasnosel’skikh VV, Dunlop M, Lühr H (1999) Identifying nonlinear wave interactions in plasmas using two-point measurements: a case study of short large amplitude magnetic structures (slams). J Geophys Res Space Phys 104(A8):17079–17090

Del Corpo A, Vellante M, Heilig B, Pietropaolo E, Reda J, Lichtenberger J (2020) An empirical model for the dayside magnetospheric plasma mass density derived from emma magnetometer network observations. J Geophys Res Space Phys 125(2):e2019JA027381

Delamere PA (2016) A review of the low-frequency waves in the giant magnetospheres. In: Low-frequency waves in space plasmas. Washington DC American geophysical union geophysical monograph series, vol 216, pp 365–378

Denton RE, Takahashi K, Min K, Hartley DP, Nishimura Y, Digman MC (2022) Models for magnetospheric mass density and average ion mass including radial dependence. Front Astron Space Sci 9

Dimmock AP, Nykyri K, Pulkkinen TI (2014) A statistical study of magnetic field fluctuations in the dayside magnetosheath and their dependence on upstream solar wind conditions. J Geophys Res Space Phys 119(8):6231–6248

Dimmock AP, Nykyri K, Karimabadi H, Osmane A, Pulkkinen TI (2015a) A statistical study into the spatial distribution and dawn-dusk asymmetry of dayside magnetosheath ion temperatures as a function of upstream solar wind conditions. J Geophys Res Space Phys 120(4):2767–2782

Dimmock AP, Osmane A, Pulkkinen TI, Nykyri K (2015b) A statistical study of the dawn-dusk asymmetry of ion temperature anisotropy and mirror mode occurrence in the terrestrial dayside magnetosheath using THEMIS data. J Geophys Res Space Phys 120(7):5489–5503

Dimmock AP, Nykyri K, Osmane A, Pulkkinen TI (2016) Statistical mapping of ULF Pc3 velocity fluctuations in the Earth’s dayside magnetosheath as a function of solar wind conditions. Adv Space Res 58(2):196–207

Dimmock AP, Nykyri K, Osmane A, Karimabadi H, Pulkkinen TI (2017) Dawn-Dusk Asymmetries of the Earth’s Dayside Magnetosheath in the Magnetosheath Interplanetary Medium Reference Frame, Chap. 5. American Geophysical Union (AGU), pp 49–72

Dorfman S, Hietala H, Astfalk P, Angelopoulos V (2017) Growth rate measurement of ULF waves in the ion foreshock. Geophys Res Lett 44(5):2120–2128

Dubinin E, Fraenz M (2016) Ultra-low-frequency waves at Venus and Mars. In: Low-frequency waves in space plasmas. Washington DC American geophysical union geophysical monograph series, vol 216, pp 343–364

Dubouloz N, Scholer M (1995a) 2D hybrid simulations of short large-amplitude magnetic structures (SLAMS) upstream of quasi-parallel collisionless shocks. Adv Space Res 15:175–178

Dubouloz N, Scholer M (1995b) Two-dimensional simulations of magnetic pulsations upstream of the Earth’s bow shock. J Geophys Res 100:9461–9474

Dungey JW (1955) Electrodynamics of the outer atmosphere. In: Physics of the ionosphere, p 229

Eastwood JP, Balogh A, Dunlop MW, Horbury TS, Dandouras I (2002) Cluster observations of fast magnetosonic waves in the terrestrial foreshock. Geophys Res Lett 29(22):3-1–3-4

Eastwood JP, Balogh A, Lucek EA, Mazelle C, Dandouras I (2003) On the existence of Alfvén waves in the terrestrial foreshock. Ann Geophys 21(7):1457–1465

Eastwood JP, Balogh A, Lucek EA, Mazelle C, Dandouras I (2005a) Quasi-monochromatic ULF foreshock waves as observed by the four-spacecraft Cluster mission: 1. Statistical properties. J Geophys Res Space Phys 110(A11):A11219

Eastwood JP, Balogh A, Lucek EA, Mazelle C, Dandouras I (2005b) Quasi-monochromatic ULF foreshock waves as observed by the four-spacecraft Cluster mission: 2. Oblique propagation. J Geophys Res Space Phys 110(A11):A11220

Eastwood JP, Lucek EA, Mazelle C, Meziane K, Narita Y, Pickett J, Treumann RA (2005c) The foreshock. Space Sci Rev 118:41–94

Eastwood JP, Schwartz SJ, Horbury TS, Carr CM, Glassmeier K-H, Richter I, Koenders C, Plaschke F, Wild JA (2011) Transient Pc3 wave activity generated by a hot flow anomaly: Cluster, Rosetta, and ground-based observations. J Geophys Res Space Phys 116(A8):A08224

Ellington SM, Moldwin MB, Liemohn MW (2016) Local time asymmetries and toroidal field line resonances: global magnetospheric modeling in SWMF. J Geophys Res Space Phys 121(3):2033–2045

Elsden T, Wright A, Degeling A (2022) A review of the theory of 3-D Alfvén (field line) resonances. Front Astron Space Sci 9:917817

Engebretson MJ, Meng CI, Arnoldy RL, Cahill LJ Jr (1986) Pc 3 pulsations observed near the south polar cusp. J Geophys Res 91(A8):8909–8918

Engebretson MJ, Zanetti LJ, Potemra TA, Baumjohann W, Luehr H, Acuna MH (1987) Simultaneous observation of Pc 3-4 pulsations in the solar wind and in the Earth’s magnetosphere. J Geophys Res 92(A9):10053–10062

Engebretson MJ, Anderson BJ, Cahill LJ Jr, Arnoldy RL, Rosenberg TJ, Carpenter DL, Gail WB, Eather RH (1990) Ionospheric signatures of cusp latitude Pc 3 pulsations. J Geophys Res 95(A3):2447–2456

Engebretson MJ, Cahill LJ Jr, Arnoldy RL, Anderson BJ, Rosenberg TJ, Carpenter DL, Inan US, Eather RH (1991a) The role of the ionosphere in coupling upstream ULF wave power into the dayside magnetosphere. J Geophys Res 96(A2):1527–1542

Engebretson MJ, Lin N, Baumjohann W, Luehr H, Anderson BJ, Zanetti LJ, Potemra TA, McPherron RL, Kivelson MG (1991b) A comparison of ULF fluctuations in the solar wind, magnetosheath, and dayside magnetosphere. 1. Magnetosheath morphology. J Geophys Res 96(A3):3441–3454

Engebretson MJ, Beck JR, Detrick DL, Rosenberg TJ, Rairden RL, Mende SB, Arnoldy RL, Cahill LJ Jr (1994a) Optical evidence that modulated electron precipitation near the magnetospheric boundary drives high latitude Pc 3-4 magnetic pulsations. In: Holtet JA, Egeland A (eds) Physical signatures of magnetospheric boundary layer processes, p 361

Engebretson MJ, Beck JR, Rairden RL, Mende SB, Arnoldy RL, Cahill LJ Jr, Rosenbergs TJ (1994b) Studies of the occurrence and properties of Pc 3-4 magnetic and auroral pulsations at South Pole. In: Antarctica Washington DC American Geophysical Union Geophysical Monograph Series, vol 81, pp 345–353

Engebretson MJ, Posch JL, Pilipenko VA, Chugunova OM (2006) ULF waves at very high latitudes. In: Magnetospheric ULF waves: synthesis and new directions, vol 169, p 137

Eriksson PTI, Blomberg LG, Schaefer S, Glassmeier KH (2006) On the excitation of ULF waves by solar wind pressure enhancements. Ann Geophys 24(11):3161–3172

Escoubet CP, Fehringer M, Goldstein M (2001) Introduction the Cluster mission. Ann Geophys 19:1197–1200

Fairfield DH (1969) Bow shock associated waves observed in the far upstream interplanetary medium. J Geophys Res 74:3541

Fowler CM, Andersson L, Ergun RE, Harada Y, Hara T, Collinson G, Peterson WK, Espley J, Halekas J, Mcfadden J, Mitchell DL, Mazelle C, Benna M, Jakosky BM (2018) MAVEN observations of solar wind-driven magnetosonic waves heating the Martian dayside ionosphere. J Geophys Res Space Phys 123(5):4129–4149

Fowler CM, Hanley KG, McFadden JP, Chaston CC, Bonnell JW, Halekas JS, Espley JR, DiBraccio GA, Schwartz SJ, Mazelle C, Mitchell DL, Xu S, Lillis RJ (2021) MAVEN observations of low frequency steepened magnetosonic waves and associated heating of the Martian nightside ionosphere. J Geophys Res Space Phys 126(10):e29615

Francia P, Regi M, De Lauretis M, Villante U, Pilipenko VA (2012) A case study of upstream wave transmission to the ground at polar and low latitudes. J Geophys Res Space Phys 117(A1):A01210

Francia P, De Lauretis M, Regi M (2013) ULF fluctuations observed along the SEGMA array during very low solar wind density conditions. Planet Space Sci 81:74–81

Fredricks RW, Kennel CF, Scarf FL, Crook GM, Green IM (1968) Detection of electric-field turbulence in the Earth’s bow shock. Phys Rev Lett 21:1761–1764

Fuselier SA, Gurnett DA, Fitzenreiter RJ (1985) The downshift of electron plasma oscillations in the electron foreshock region. J Geophys Res Space Phys 90(A5):3935–3946

Gail WB (1990) Theory of electromagnetic cyclotron wave growth in a time-varying magnetoplasma. J Geophys Res 95(A11):19089–19097

Gamayunov KV, Engebretson MJ (2021) Low frequency ULF waves in the Earth’s inner magnetosphere: statistics during coronal mass ejections and seeding of EMIC waves. J Geophys Res Space Phys 126(8):e29247 PubMed PMC

Gary SP (1978) The electromagnetic ion beam instability and energy loss of fast alpha particles. Nucl Fusion 18(3):327–334

Gary SP (1991) Electromagnetic ion / ion instabilities and their consequences in space plasmas - a review. Space Sci Rev 56(3–4):373–415

Gary SP (1993) Theory of space plasma microinstabilities. Cambridge atmospheric and space science series. Cambridge University Press, Cambridge

Gary SP, Foosland DW, Smith CW, Lee MA, Goldstein ML (1984) Electromagnetic ion beam instabilities. Phys Fluids 27(7):1852–1862

Génot V, Broussillou L, Budnik E, Hellinger P, Trávníček PM, Lucek E, Dandouras I (2011) Timing mirror structures observed by Cluster with a magnetosheath flow model. Ann Geophys 29(10):1849–1860

George H, Osmane A, Kilpua EKJ, Lejosne S, Turc L, Grandin M, Kalliokoski MMH, Hoilijoki S, Ganse U, Alho M, Battarbee M, Bussov M, Dubart M, Johlander A, Manglayev T, Papadakis K, Pfau-Kempf Y, Suni J, Tarvus V, Zhou H, Palmroth M (2022) Estimating inner magnetospheric radial diffusion using a hybrid-Vlasov simulation. Front Astron Space Sci 9:866455

Giacalone J, Burgess D, Schwartz SJ, Ellison DC (1993) Ion injection and acceleration at parallel shocks: comparisons of self-consistent plasma simulations with existing theories. Astrophys J 402:550

Gingell I, Schwartz SJ, Burgess D, Johlander A, Russell CT, Burch JL, Ergun RE, Fuselier S, Gershman DJ, Giles BL, Goodrich KA, Khotyaintsev YV, Lavraud B, Lindqvist P-A, Strangeway RJ, Trattner K, Torbert RB, Wei H, Wilder F (2017) MMS observations and hybrid simulations of surface ripples at a marginally quasi-parallel shock. J Geophys Res Space Phys 122(11):11003–11017

Glassmeier K-H, Othmer C, Cramm R, Stellmacher M, Engebretson M (1999) Magnetospheric field line resonances: a comparative planetology approach. Surv Geophys 20(1):61–109

Glassmeier K-H, Klimushkin D, Othmer C, Mager P (2004) ULF waves at Mercury: Earth, the giants, and their little brother compared. Adv Space Res 33(11):1875–1883

Gopalswamy N, Yashiro S, Michalek G, Stenborg G, Vourlidas A, Freeland S, Howard R (2009) The SOHO/LASCO CME catalog. Earth Moon Planets 104(1–4):295–313

Gopalswamy N, Yashiro S, Xie H, Akiyama S, Mäkelä P (2015) Properties and geoeffectiveness of magnetic clouds during solar cycles 23 and 24. J Geophys Res Space Phys 120(11):9221–9245

Gosling JT, Skoug RM (2002) On the origin of radial magnetic fields in the heliosphere. J Geophys Res Space Phys 107(A10):1327

Gosling JT, Asbridge JR, Bame SJ, Paschmann G, Sckopke N (1978) Observations of two distinct populations of bow shock ions in the upstream solar wind. Geophys Res Lett 5:957–960

Greenstadt EW, Olson JV (1976) Pc 3, 4 activity and interplanetary field orientation. J Geophys Res 81(A34):5911–5920

Greenstadt EW, Olson JV (1977) A contribution to ULF activity in the Pc 3-4 range correlated with IMF radial orientation. J Geophys Res 82(32):4991

Greenstadt EW, Green IM, Inouye GT, Hundhausen AJ, Bame SJ, Strong IB (1968) Correlated magnetic field and plasma observations of the Earth’s bow shock. J Geophys Res 73(1):51

Greenstadt EW, Olson JV, Loewen PD, Singer HJ, Russell CT (1979) Correlation of PC 3, 4, and 5 activity with solar wind speed. J Geophys Res 84:6694–6696

Greenstadt EW, McPherron RL, Takahashi K (1980) Solar wind control of daytime, midperiod geomagnetic pulsations. J Geomagn Geoelectr 32:SII89–SII110

Greenstadt EW, Mellott MM, McPherron RL, Russell CT, Singer HJ, Knecht DJ (1983) Transfer of pulsation-related wave activity across the magnetopause: observations of corresponding spectra by ISEE-1 and ISEE-2. Geophys Res Lett 10(8):659–662

Greenstadt EW, Le G, Strangeway RJ (1995) ULF waves in the foreshock. Adv Space Res 15:71–84 PubMed

Gul’yel’mi AV (1974) Diagnostics of the magnetosphere and interplanetary medium by means of pulsations. Space Sci Rev 16(3):331–345

Gutynska O, Šimůnek J, Šafránková J, Němeček Z, Přech L (2012) Multipoint study of magnetosheath magnetic field fluctuations and their relation to the foreshock. J Geophys Res Space Phys 117(A4):A04214

Gutynska O, Omidi N, Sibeck DG, Nemecek Z, Safrankova J, Lynnyk A (2020) Solar wind deflection in the foreshock: model-data comparison. J Geophys Res Space Phys 125(2):e2019JA026970

Hada T, Kennel CF, Terasawa T (1987) Excitation of compressional waves and the formation of shocklets in the Earth’s foreshock. J Geophys Res 92:4423–4435

Hao Y, Lembege B, Lu Q, Guo F (2016) Formation of downstream high-speed jets by a rippled nonstationary quasi-parallel shock: 2-D hybrid simulations. J Geophys Res 121:2080–2094

Hao Y, Gao X, Lu Q, Huang C, Wang R, Wang S (2017) Reformation of rippled quasi-parallel shocks: 2-D hybrid simulations. J Geophys Res Space Phys 122(6):6385–6396

Hartinger MD, Moldwin MB, Takahashi K, Bonnell JW, Angelopoulos V (2013a) Survey of the ulf wave Poynting vector near the Earth’s magnetic equatorial plane. J Geophys Res Space Phys 118(10):6212–6227

Hartinger MD, Turner DL, Plaschke F, Angelopoulos V, Singer H (2013b) The role of transient ion foreshock phenomena in driving Pc5 ULF wave activity. J Geophys Res Space Phys 118:299–312

Hartinger MD, Moldwin MB, Zou S, Bonnell JW, Angelopoulos V (2015) ULF wave electromagnetic energy flux into the ionosphere: Joule heating implications. J Geophys Res Space Phys 120(1):494–510

Hasegawa A, Tsui KH, Assis AS (1983) A theory of long period magnetic pulsations, 3. Local field line oscillations. Geophys Res Lett 10(8):765–767

Hasegawa H, Fujimoto M, Phan TD, Rème H, Balogh A, Dunlop MW, Hashimoto C, TanDokoro R (2004) Transport of solar wind into Earth’s magnetosphere through rolled-up Kelvin-Helmholtz vortices. Nature 430(7001):755–758 PubMed

Hassam AB (1978) Transmission of Alfén waves through the Earth’s bow shock: theory and observation. J Geophys Res 83(A2):643–653

Heilig B, Lühr H, Rother M (2007) Comprehensive study of ULF upstream waves observed in the topside ionosphere by CHAMP and on the ground. Ann Geophys 25(3):737–754

Heilig B, Lotz S, Verō J, Sutcliffe P, Reda J, Pajunpää K, Raita T (2010) Empirically modelled Pc3 activity based on solar wind parameters. Ann Geophys 28(9):1703–1722

Heilig B, Sutcliffe PR, Ndiitwani DC, Collier AB (2013) Statistical study of geomagnetic field line resonances observed by CHAMP and on the ground. J Geophys Res Space Phys 118(5):1934–1947

Hietala H, Laitinen TV, Andréeová K, Vainio R, Vaivads A, Palmroth M, Pulkkinen TI, Koskinen HEJ, Lucek EA, Rème H (2009) Supermagnetosonic jets behind a collisionless quasiparallel shock. Phys Rev Lett 103(24):245001 PubMed

Hnat B, O’Connell D, Nakariakov VM, Sundberg T (2016) Statistically determined dispersion relations of magnetic field fluctuations in the terrestrial foreshock. Astrophys J 827(2):91

Hobara Y, Walker SN, Balikhin M, Pokhotelov OA, Dunlop M, Nilsson H, RèMe H (2007) Characteristics of terrestrial foreshock ULF waves: Cluster observations. J Geophys Res Space Phys 112(A7):A07202

Hoppe M, Russell CT (1981) On the nature of ULF waves upstream of planetary bow shocks. Adv Space Res 1:327–332

Hoppe MM, Russell CT (1982) Particle acceleration at planetary bow shock waves. Nature 295(5844):41–42

Hoppe MM, Russell CT (1983) Plasma rest frame frequencies and polarizations of the low-frequency upstream waves - ISEE 1 and 2 observations. J Geophys Res 88:2021–2027

Hoppe MM, Russell CT, Frank LA, Eastman TE, Greenstadt EW (1981) Upstream hydromagnetic waves and their association with backstreaming ion populations - ISEE 1 and 2 observations. J Geophys Res 86:4471–4492

Hoppe MM, Russell CT, Eastman TE, Frank LA (1982) Characteristics of the ULF waves associated with upstream ion beams. J Geophys Res 87:643–650

Howard TA, Menk FW (2005) Ground observations of high-latitude Pc3-4 ULF waves. J Geophys Res Space Phys 110(A4):A04205

Hsieh W-C, Shue J-H (2013) Dependence of the oblique propagation of ulf foreshock waves on solar wind parameters. J Geophys Res Space Phys 118(7):4151–4160

Hudson M, Denton R, Lessard M, Miftakhova E, Anderson R (2004) A study of Pc-5 ulf oscillations. Ann Geophys 22(1):289–302

Hughes WJ (1994) Magnetospheric ULF waves: a tutorial with a historical perspective. In: Engebretson MJ, Takahashi K, Scholer M (eds) Solar wind sources of magnetospheric ultra-low-frequency waves, p 1

Huttunen KEJ, Schwenn R, Bothmer V, Koskinen HEJ (2005) Properties and geoeffectiveness of magnetic clouds in the rising, maximum and early declining phases of solar cycle 23. Ann Geophys 23(2):625–641

Jackman CM, Arridge CS (2011) Solar cycle effects on the dynamics of Jupiter’s and Saturn’s magnetospheres. Sol Phys 274(1–2):481–502

Jacobs JA, Kato Y, Matsushita S, Troitskaya VA (1964) Classification of geomagnetic micropulsations. J Geophys Res 69(1):180–181

Jacobsen KS, Phan TD, Eastwood JP, Sibeck DG, Moen JI, Angelopoulos V, McFadden JP, Engebretson MJ, Provan G, Larson D, Fornaçon K-H (2009) THEMIS observations of extreme magnetopause motion caused by a hot flow anomaly. J Geophys Res 114:A08210

James MK, Bunce EJ, Yeoman TK, Imber SM, Korth H (2016) A statistical survey of ultralow-frequency wave power and polarization in the Hermean magnetosphere. J Geophys Res Space Phys 121(9):8755–8772 PubMed PMC

James MK, Imber SM, Bunce EJ, Yeoman TK, Lockwood M, Owens MJ, Slavin JA (2017) Interplanetary magnetic field properties and variability near Mercury’s orbit. J Geophys Res Space Phys 122(8):7907–7924

James MK, Imber SM, Yeoman TK, Bunce EJ (2019) Field line resonance in the Hermean magnetosphere: structure and implications for plasma distribution. J Geophys Res Space Phys 124(1):211–228

Jarvinen R, Alho M, Kallio E, Pulkkinen TI (2020a) Oxygen ion escape from Venus is modulated by ultra-low frequency waves. Geophys Res Lett 47(11):e87462

Jarvinen R, Alho M, Kallio E, Pulkkinen TI (2020b) Ultra-low-frequency waves in the ion foreshock of Mercury: a global hybrid modelling study. Mon Not R Astron Soc 491(3):4147–4161

Jarvinen R, Kallio E, Pulkkinen TI (2022) Ultra-low frequency foreshock waves and ion dynamics at Mars. J Geophys Res Space Phys 127(5):e30078

Jian L, Russell CT, Luhmann JG, Skoug RM (2006) Properties of stream interactions at one AU during 1995-2004. Sol Phys 239(1–2):337–392

Johlander A, Battarbee M, Turc L, Ganse U, Pfau-Kempf Y, Grandin M, Suni J, Tarvus V, Bussov M, Zhou H, Alho M, Dubart M, George H, Papadakis K, Palmroth M (2022) Quasi-parallel shock reformation seen by magnetospheric multiscale and ion-kinetic simulations. Geophys Res Lett 49(2):e96335 PubMed PMC

Johnson JR, Cheng CZ (1997) Kinetic Alfvén waves and plasma transport at the magnetopause. Geophys Res Lett 24(11):1423–1426

Johnson JR, Cheng CZ, Song P (2001) Signatures of mode conversion and kinetic Alfvén waves at the magnetopause. Geophys Res Lett 28(2):227–230

Kajdič P, Blanco-Cano X, Omidi N, Russell CT (2011) Multi-spacecraft study of foreshock cavitons upstream of the quasi-parallel bow shock. Planet Space Sci 59:705–714

Kajdič P, Blanco-Cano X, Aguilar-Rodriguez E, Russell CT, Jian LK, Luhmann JG (2012) Waves upstream and downstream of interplanetary shocks driven by coronal mass ejections. J Geophys Res Space Phys 117(A6):A06103

Kajdič P, Blanco-Cano X, Omidi N, Meziane K, Russell CT, Sauvaud J-A, Dandouras I, Lavraud B (2013) Statistical study of foreshock cavitons. Ann Geophys 31:2163–2178

Kajdič P, Blanco-Cano X, Omidi N, Rojas-Castillo D, Sibeck DG, Billingham L (2017) Traveling foreshocks and transient foreshock phenomena. J Geophys Res Space Phys 122(9):9148–9168. 2017JA023901

Kajdič P, Pfau-Kempf Y, Turc L, Dimmock AP, Palmroth M, Takahashi K, Kilpua E, Soucek J, Takahashi N, Preisser L, Blanco-Cano X, Trotta D, Burgess D (2021) ULF wave transmission across collisionless shocks: 2.5D local hybrid simulations. J Geophys Res Space Phys 126(4):e2021JA029283

Kallio E, Jarvinen R, Massetti S, Alberti T, Milillo A, Orsini S, De Angelis E, Laky G, Slavin J, Raines JM, Pulkkinen TI (2022) Ultra-low frequency waves in the Hermean magnetosphere: on the role of the morphology of the magnetic field and the foreshock. Geophys Res Lett 49(24):e2022GL101850

Kaufmann RL, Horng J-T, Wolfe A (1970) Large-amplitude hydromagnetic waves in the inner magnetosheath. J Geophys Res 75(25):4666–4676

Kavosi S, Raeder J (2015) Ubiquity of Kelvin-Helmholtz waves at Earth’s magnetopause. Nat Commun 6:7019 PubMed PMC

Khurana KK, Kivelson MG (1989) Ultralow frequency MHD waves in Jupiter’s middle magnetosphere. J Geophys Res 94:5241–5254

Killen K, Omidi N, Krauss-Varban D, Karimabadi H (1995) Linear and nonlinear properties of ulf waves driven by ring-beam distribution functions. J Geophys Res Space Phys 100(A4):5835–5852

Kilpua EKJ, Balogh A, von Steiger R, Liu YD (2017b) Geoeffective properties of solar transients and stream interaction regions. Space Sci Rev 212(3–4):1271–1314

Kilpua EKJ, Lumme E, Andreeova K, Isavnin A, Koskinen HEJ (2015) Properties and drivers of fast interplanetary shocks near the orbit of the Earth (1995-2013). J Geophys Res Space Phys 120(6):4112–4125

Kilpua E, Koskinen HEJ, Pulkkinen TI (2017a) Coronal mass ejections and their sheath regions in interplanetary space. Living Rev Sol Phys 14(1):5 PubMed PMC

Kim H, Gerrard AJ, Lanzerotti LJ, Soto-Chavez R, Cohen RJ, Manweiler JW (2017) Ring current He ion control by bounce resonant ULF waves. J Geophys Res Space Phys 122(12):12031–12039

Kim G-J, Kim K-H, Kwon H-J, Shiokawa K, Takahashi K, Hwang J (2020) Long-lasting ground-satellite high coherence of compressional dayside Pc3-Pc4 pulsations. J Geophys Res Space Phys 125(8):e28074

Kivelson MG, Russell CT (1995) Introduction to space physics. Cambridge University Press, New York

Kivelson MG, Southwood DJ (1986) Coupling of global magnetospheric mhd eigenmodes to field line resonances. J Geophys Res 91(A4):4345

Kivelson MG, Southwood DJ (1988) Hydromagnetic waves and the ionosphere. Geophys Res Lett 15(11):1271–1274

Klein KG, Spence H, Alexandrova O, Argall M, Arzamasskiy L, Bookbinder J, Broeren T, Caprioli D, Case A, Chandran B, Chen L-J, Dors I, Eastwood J, Forsyth C, Galvin A, Genot V, Halekas J, Hesse M, Hine B, Horbury T, Jian L, Kasper J, Kretzschmar M, Kunz M, Lavraud B, Le Contel O, Mallet A, Maruca B, Matthaeus W, Niehof J, O’Brien H, Owen C, Retinò A, Reynolds C, Roberts O, Schekochihin A, Skoug R, Smith C, Smith S, Steinberg J, Stevens M, Szabo A, TenBarge J, Torbert R, Vasquez B, Verscharen D, Whittlesey P, Wickizer B, Zank G, Zweibel E (2023) HelioSwarm: a multipoint, multiscale mission to characterize turbulence. Space Sci Rev 219(8):74

Koller F, Plaschke F, Temmer M, Preisser L, Roberts OW, Vörös Z (2023) Magnetosheath jet formation influenced by parameters in solar wind structures. J Geophys Res Space Phys 128(4):e2023JA031339 PubMed PMC

Kovner MS, Lebedev VV, Pliasova-Bakunina TA, Troitskaia VA (1976) On the generation of low-frequency waves in the solar wind in the front of the bow shock. Planet Space Sci 24(3):261–267

Krauss-Varban D (1995) Waves associated with quasi-parallel shocks: generation, mode conversion and implications. Adv Space Res 15(8–9):271–284

Krauss-Varban D, Omidi N (1991) Structure of medium Mach number quasi-parallel shocks: upstream and downstream waves. J Geophys Res Space Phys 96(A10):17715–17731

Krauss-Varban D, Omidi N (1993) Propagation characteristics of waves upstream and downstream of quasi-parallel shocks. Geophys Res Lett 20(11):1007–1010

Krauss-Varban D, Omidi N, Quest KB (1994) Mode properties of low-frequency waves: kinetic theory versus Hall-MHD. J Geophys Res 99(A4):5987–6010

Krauss-Varban D, Li Y, Luhmann JG (2008) Ion acceleration at the Earth’s bow shock and at interplanetary hocks: a comparison. In: Li G, Hu Q, Verkhoglyadova O, Zank GP, Lin RP, Luhmann JG (eds) Particle acceleration and transport in the heliosphere and beyond, 7th annual astrophysics conference. AIP, New York, pp 307–313

Kronberg EA, Gorman J, Nykyri K, Smirnov AG, Gjerloev JW, Grigorenko EE, Kozak LV, Ma X, Trattner KJ, Friel M (2021) Kelvin-Helmholtz instability associated with reconnection and ultra low frequency waves at the ground: a case study. Front Phys 9:700

Lamy PL, Floyd O, Boclet B, Wojak J, Gilardy H, Barlyaeva T (2019) Coronal mass ejections over solar cycles 23 and 24. Space Sci Rev 215(5):39

Lanzerotti LJ, Medford LV, Maclennan CG, Hasegawa T, Acuna MH, Dolce SR (1981) Polarization characteristics of hydromagnetic waves at low geomagnetic latitudes. J Geophys Res 86(A7)

Le G, Russell CT (1992a) A study of ULF wave foreshock morphology - I: ULF foreshock boundary. Planet Space Sci 40(9):1203–1213

Le G, Russell CT (1992b) A study of ULF wave foreshock morphology - II: spatial variation of ULF waves. Planet Space Sci 40:1215–1225

Le G, Russell CT (1994) The morphology of ULF waves in the Earth’s foreshock. In: Engebretson MJ, Takahashi K, Scholer M (eds) Solar wind sources of magnetospheric ultra-low-frequency waves, p 87

Le G, Russell CT (1996) Solar wind control of upstream wave frequency. J Geophys Res 101(A2):2571–2576

Le G, Russell CT, Orlowski DS (1993) Coherence lengths of upstream ULF waves - dual ISEE observations. Geophys Res Lett 20:1755–1758

Le G, Chi PJ, Goedecke W, Russell CT, Szabo A, Petrinec SM, Angelopoulos V, Reeves GD, Chun FK (2000) Magnetosphere on May 11, 1999, the day the solar wind almost disappeared: II. Magnetic pulsations in space and on the ground. Geophys Res Lett 27(14):2165–2168

Le G, Chi PJ, Blanco-Cano X, Boardsen S, Slavin JA, Anderson BJ, Korth H (2013) Upstream ultra-low frequency waves in Mercury’s foreshock region: MESSENGER magnetic field observations. J Geophys Res Space Phys 118(6):2809–2823

Lee D-H, Lysak RL (1989) Magnetospheric ulf wave coupling in the dipole model: the impulsive excitation. J Geophys Res 94(A12):17097–17103

Lee MA, Mewaldt RA, Giacalone J (2012) Shock acceleration of ions in the heliosphere. Space Sci Rev 173(1–4):247–281

Lefebvre B, Seki Y, Schwartz SJ, Mazelle C, Lucek EA (2009) Reformation of an oblique shock observed by Cluster. J Geophys Res Space Phys 114(A11):A11107

Lessard MR, Hudson MK, Lühr H (1999) A statistical study of Pc3-Pc5 magnetic pulsations observed by the AMPTE/ion release module satellite. J Geophys Res 104(A3):4523–4538

Li W, Thorne RM, Bortnik J, Nishimura Y, Angelopoulos V (2011) Modulation of whistler mode chorus waves: 1. Role of compressional Pc4-5 pulsations. J Geophys Res Space Phys 116(A6):A06205

Li L, Omura Y, Zhou X-Z, Zong Q-G, Rankin R, Yue C, Fu S-Y (2022) Nonlinear wave growth analysis of chorus emissions modulated by ULF waves. Geophys Res Lett 49(10):e97978

Li Y-X, Yue C, Liu J, Zong Q, Hu H, Zhou X, Hu Z, Yang F, Zhao X (2023) The distribution and evolution of storm time Pc3-5 ULF wave power based on satellite and ground observations. J Geophys Res Space Phys 128(12):e2023JA031775

Lin Y, Wang XY (2005) Three-dimensional global hybrid simulation of dayside dynamics associated with the quasi-parallel bow shock. J Geophys Res Space Phys 110(A12):A12216

Lin RP, Meng CI, Anderson KA (1974) 30- to 100-keV protons upstream from the Earth’s bow shock. J Geophys Res 79(4):489

Lin D, Wang C, Li W, Tang B, Guo X, Peng Z (2014) Properties of Kelvin-Helmholtz waves at the magnetopause under northward interplanetary magnetic field: statistical study. J Geophys Res Space Phys 119(9):7485–7494

Liu YH, Fraser BJ, Ables ST, Dunlop MW, Zhang BC, Liu RY, Zong QG (2008) Phase structure of Pc3 waves observed by Cluster and ground stations near the cusp. J Geophys Res Space Phys 113(A7):A07S37

Liu YH, Fraser BJ, Ables ST, Zhang BC, Liu RY, Dunlop MW, Waterman J (2009a) Transverse-scale size of Pc3 ULF waves near the exterior cusp. J Geophys Res Space Phys 114(A8):A08208

Liu W, Sarris T, Li X, Elkington S, Ergun R, Angelopoulos V, Bonnell J, Glassmeier K (2009b) Electric and magnetic field observations of Pc4 and Pc5 pulsations in the inner magnetosphere: a statistical study. J Geophys Res Space Phys 114(A12):A12206

Liu TZ, Hao Y, Wilson LB, Turner DL, Zhang H (2021) Magnetospheric multiscale observations of Earth’s oblique bow shock reformation by foreshock ultralow-frequency waves. Geophys Res Lett 48(2):e91184

Longmore M, Schwartz SJ, Geach J, Cooling BMA, Dandouras I, Lucek EA, Fazakerley AN (2005) Dawn-dusk asymmetries and sub-Alfvénic flow in the high and low latitude magnetosheath. Ann Geophys 23(10):3351–3364

Lucek EA, Balogh A (1997) Ulysses observations of a discrete wavepacket upstream of an interplanetary shock. Geophys Res Lett 24(19):2387–2390

Lucek EA, Horbury TS, Dunlop MW, Cargill PJ, Schwartz SJ, Balogh A, Brown P, Carr C, Fornacon KH, Georgescu E (2002) Cluster magnetic field observations at a quasi-parallel bow shock. Ann Geophys 20(11):1699–1710

Lucek E, Horbury T, Balogh A, Dandouras I, Rème H (2004) Cluster observations of structures at quasi-parallel bow shocks. Ann Geophys 22(7):2309–2313

Lucek EA, Constantinescu D, Goldstein ML, Pickett J, Pinçon JL, Sahraoui F, Treumann RA, Walker SN (2005) The magnetosheath. Space Sci Rev 118(1–4):95–152

Lucek EA, Horbury TS, Dandouras I, RèMe H (2008) Cluster observations of the Earth’s quasi-parallel bow shock. J Geophys Res Space Phys 113(A7):A07S02

Luhmann JG, Tatrallyay M, Russell CT, Winterhalter D (1983) Magnetic field fluctuations in the Venus magnetosheath. Geophys Res Lett 10(8):655–658

Luhmann JG, Russell CT, Elphic RC (1986) Spatial distributions of magnetic field fluctuations in the dayside magnetosheath. J Geophys Res 91(A2):1711–1715

Lysak RL (2022) Field line resonances and cavity modes at Earth and Jupiter. Front Astron Space Sci 9:913554

Lysak RL, Lee D-h (1992) Response of the dipole magnetosphere to pressure pulses. Geophys Res Lett 19(9):937–940

Lysak RL, Song Y (2020) Field line resonances in Jupiter’s magnetosphere. Geophys Res Lett 47(18):e89473

Ma X, Nykyri K, Dimmock A, Chu C (2020) Statistical study of solar wind, magnetosheath, and magnetotail plasma and field properties: 12+ years of THEMIS observations and MHD simulations. J Geophys Res Space Phys 125(10):e28209

Mann IR, Wright AN, Mills KJ, Nakariakov VM (1999) Excitation of magnetospheric waveguide modes by magnetosheath flows. J Geophys Res Space Phys 104(A1):333–353

Mann IR, Voronkov I, Dunlop M, Donovan E, Yeoman TK, Milling DK, Wild J, Kauristie K, Amm O, Bale SD, Balogh A, Viljanen A, Opgenoorth HJ (2002) Coordinated ground-based and Cluster observations of large amplitude global magnetospheric oscillations during a fast solar wind speed interval. Ann Geophys 20(4):405–426

Manners H, Masters A (2019) First evidence for multiple-harmonic standing Alfvén waves in Jupiter’s equatorial plasma sheet. Geophys Res Lett 46(16):9344–9351

Manners H, Masters A (2020) The global distribution of ultralow-frequency waves in Jupiter’s magnetosphere. J Geophys Res Space Phys 125(10):e28345

Manners H, Masters A, Yates JN (2018) Standing Alfvén waves in Jupiter’s magnetosphere as a source of ∼10- to 60-min quasiperiodic pulsations. Geophys Res Lett 45(17):8746–8754

Masson A, Nykyri K (2018) Kelvin-Helmholtz instability: lessons learned and ways forward. Space Sci Rev 214(4):71

Matsuoka H, Yukimatu AS, Yamagishi H, Sato N, Sofko GJ, Fraser BJ, Ponomarenko P, Liu R, Goka T (2002) Coordinated observations of Pc3 pulsations near cusp latitudes. J Geophys Res Space Phys 107(A11):1400

Mazelle C, Meziane K, Le Quéau D, Wilber M, Eastwood JP, Rème H, Sauvaud JA, Bosqued JM, Dandouras I, McCarthy M, Kistler LM, Klecker B, Korth A, Bavassano-Cattaneo MB, Pallocchia G, Lundin R, Balogh A (2003) Production of gyrating ions from nonlinear wave-particle interaction upstream from the Earth’s bow shock: a case study from Cluster-CIS. Planet Space Sci 51(12):785–795

McKenzie JF (1970) Hydromagnetic wave interaction with the magnetopause and the bow shock. Planet Space Sci 18(1):1–23

McKenzie JF, Westphal KO (1969) Transmission of Alfvén waves through the Earth’s bow shock. Planet Space Sci 17(5):1029–1037

McKenzie JF, Westphal KO (1970) Interaction of hydromagnetic waves with hydromagnetic shocks. Phys Fluids 13(3):630–640

Menk FW, Waters CL (2013) Magnetoseismology. Wiley-VCH, Weinheim

Merka J, Szabo A, Slavin JA, Peredo M (2005) Three-dimensional position and shape of the bow shock and their variation with upstream Mach numbers and interplanetary magnetic field orientation. J Geophys Res Space Phys 110(A4):A04202

Merkin VG, Lyon JG, Claudepierre SG (2013) Kelvin-Helmholtz instability of the magnetospheric boundary in a three-dimensional global mhd simulation during northward imf conditions. J Geophys Res Space Phys 118(9):5478–5496

Meziane K, d’Uston C (1998) A statistical study of the upstream intermediate ion boundary in the Earth’s foreshock. Ann Geophys 16(2):125–133

Meziane K, Wilber M, Mazelle C, Parks GK, Hamza AM (2005) A review of field-aligned beams observed upstream of the bow shock. In: Li G, Zank GP, Russell CT (eds) The physics of collisionless shocks: 4th annual IGPP international astrophysics conference. American institute of physics conference series, vol 781, pp 116–122

Mier-Jedrzejowicz WAC, Southwood DJ (1981) Comparison of Pc3 and Pc4 pulsation characteristics on an East-West mid-latitude chain of magnetometers. J Atmos Terr Phys 43:911–917

Min K, Bortnik J, Denton RE, Takahashi K, Lee J, Singer HJ (2013) Quiet time equatorial mass density distribution derived from ampte/cce and goes using the magnetoseismology technique. J Geophys Res Space Phys 118(10):6090–6105

Morrison K (1990) Quasi-periodic VLF emissions and concurrent magnetic pulsations seen at L = 4. Planet Space Sci 38(12):1555–1565

Morrison K (1991) On the nature of Pc3 pulsations at L = 4 and their solar wind dependence. Planet Space Sci 39(7):1017–1023

Motoba T, Ebihara Y, Kadokura A, Engebretson MJ, Lessard MR, Weatherwax AT, Gerrard AJ (2017) Fast-moving diffuse auroral patches: a new aspect of daytime Pc3 auroral pulsations. J Geophys Res Space Phys 122(2):1542–1554

Motoba T, Ebihara Y, Ogawa Y, Kadokura A, Engebretson MJ, Angelopoulos V, Gerrard AJ, Weatherwax AT (2019) On the driver of daytime Pc3 auroral pulsations. Geophys Res Lett 46(2):553–561

Murphy KR, Inglis AR, Sibeck DG, Watt CEJ, Rae IJ (2020) Inner magnetospheric ULF waves: the occurrence and distribution of broadband and discrete wave activity. J Geophys Res Space Phys 125(9):e27887

Mursula K, Rasinkangas R, Bösinger T, Erlandson RE, Lindqvist PA (1997) Nonbouncing Pc 1 wave bursts. J Geophys Res 102(A8):17611–17624

Narita Y, Glassmeier K-H (2005) Dispersion analysis of low-frequency waves through the terrestrial bow shock. J Geophys Res Space Phys 110(A12):A12215

Narita Y, Glassmeier KH (2006) Propagation pattern of low frequency waves in the terrestrial magnetosheath. Ann Geophys 24(10):2441–2444

Narita Y, Glassmeier KH, Fornaçon KH, Richter I, Schäfer S, Motschmann U, Dandouras I, Rème H, Georgescu E (2006) Low-frequency wave characteristics in the upstream and downstream regime of the terrestrial bow shock. J Geophys Res Space Phys 111(A1):A01203

Ndiitwani DC, Sutcliffe PR (2009) The structure of low-latitude Pc3 pulsations observed by CHAMP and on the ground. Ann Geophys 27(3):1267–1277

Neugebauer M, Goldstein R, Goldstein BE (1997) Features observed in the trailing regions of interplanetary clouds from coronal mass ejections. J Geophys Res 102(A9):19743–19752

Nishida A (1964) Ionospheric screening effect and storm sudden commencement. J Geophys Res 69(9):1861–1874

Nosé M, Iyemori T, Sugiura M, Slavin JA (1995) A strong dawn/dusk asymmetry in Pc5 pulsation occurrence observed by the de-1 satellite. Geophys Res Lett 22(15):2053–2056

Nykyri K (2013) Impact of MHD shock physics on magnetosheath asymmetry and Kelvin-Helmholtz instability. J Geophys Res Space Phys 118(8):5068–5081

Nykyri K, Ma X, Dimmock A, Foullon C, Otto A, Osmane A (2017) Influence of velocity fluctuations on the Kelvin-Helmholtz instability and its associated mass transport. J Geophys Res Space Phys 122(9):9489–9512

Odera TJ (1986) Solar wind controlled pulsations: a review. Rev Geophys 24:55–74

Odera TJ, van Swol D, Russell CT, Green CA (1991) PC 3, 4 magnetic pulsations observed simultaneously in the magnetosphere and at multiple ground stations. Geophys Res Lett 18(9):1671–1674

Odera TJ, Van Swol D, Russell CT (1994) Simultaneous observation of Pc 3, 4 pulsations in the magnetosphere and at multiple ground stations. Sol Wind Sources Magnetospher Ultra-Low-Freq Waves Geophys Monogr Ser 81:311–323

Omidi N, Sibeck DG (2007) Formation of hot flow anomalies and solitary shocks. J Geophys Res 112:A01203

Omidi N, Winske D (1990) Steepening of kinetic magnetosonic waves into shocklets: simulations and consequences for planetary shocks and comets. J Geophys Res Space Phys 95(A3):2281–2300

Omidi N, Blanco-Cano X, Russell CT (2005) Macrostructure of collisionless bow shocks: 1. Scale lengths. J Geophys Res Space Phys 110(A12):A12212

Omidi N, Zhang H, Sibeck D, Turner D (2013) Spontaneous hot flow anomalies at quasi-parallel shocks: 2. Hybrid simulations. J Geophys Res Space Phys 118(1):173–180

Omidi N, Berchem J, Sibeck D, Zhang H (2016) Impacts of spontaneous hot flow anomalies on the magnetosheath and magnetopause. J Geophys Res 121:3155–3169

Omidi N, Collinson G, Sibeck D (2017) Structure and properties of the foreshock at Venus. J Geophys Res Space Phys 122(10):10275–10286

Onsager TG, Winske D, Thomsen MF (1991) Ion injection simulations of quasi-parallel shock re-formation. J Geophys Res 96(A12):21183–21194

Palmaerts B, Roussos E, Krupp N, Kurth WS, Mitchell DG, Yates JN (2016) Statistical analysis and multi-instrument overview of the quasi-periodic 1-hour pulsations in Saturn’s outer magnetosphere. Icarus 271:1–18

Palmroth M, Archer M, Vainio R, Hietala H, Pfau-Kempf Y, Hoilijoki S, Hannuksela O, Ganse U, Sandroos A, von Alfthan S, Eastwood JP (2015) ULF foreshock under radial IMF: THEMIS observations and global kinetic simulation vlasiator results compared. J Geophys Res Space Phys 120(10):8782–8798

Palmroth M, Ganse U, Pfau-Kempf Y, Battarbee M, Turc L, Brito T, Grandin M, Hoilijoki S, Sandroos A, von Alfthan S (2018) Vlasov methods in space physics and astrophysics. Living Rev Comput Astrophys 4(1) PubMed PMC

Park SM, Lee D-Y, Min KW, Seon J (2002) Three-dimensional magnetohydrodynamic simulations on the interaction of interplanetary density pulses with the bow shock. Phys Plasmas 9:1764–1774

Parrot M, Buzzi A, SantolíK O, Berthelier JJ, Sauvaud JA, Lebreton JP (2006) New observations of electromagnetic harmonic ELF emissions in the ionosphere by the DEMETER satellite during large magnetic storms. J Geophys Res Space Phys 111(A8):A08301

Paschmann G, Sckopke N, Asbridge J, Bame S, Gosling J (1980) Energization of solar wind ions by reflection from the Earth’s bow shock. J Geophys Res Space Phys 85(A9):4689–4693

Paschmann G, Sckopke N, Papamastorakis I, Asbridge JR, Bame SJ, Gosling JT (1981) Characteristics of reflected and diffuse ions upstream from the Earth’s bow shock. J Geophys Res 86(A6):4355–4364

Pi G, Shue J-H, Chao J-K, Němeček Z, Åafránková J, Lin C-H (2014) A reexamination of long-duration radial IMF events. J Geophys Res Space Phys 119(9):7005–7011

Pilipenko V, Fedorov E, Mazur N, Engebretson MJ, Hughes WJ (1999) Magnetohydrodynamic waveguide/resonator for Pc3 ULF pulsations at cusp latitudes. Earth Planets Space 51:441–448

Pilipenko VA, Chugunova OM, Engebretson MJ (2008) Pc3 4 ULF waves at polar latitudes. J Atmos Sol-Terr Phys 70(18):2262–2274

Plaschke F, Hietala H, Archer M, Blanco-Cano X, Kajdič P, Karlsson T, Lee SH, Omidi N, Palmroth M, Roytershteyn V, Schmid D, Sergeev V, Sibeck D (2018) Jets downstream of collisionless shocks. Space Sci Rev 214(5):81 PubMed PMC

Pliasova-Bakunina TA, Golikov IV, Troitskaia VA, Hedgecock PC (1978) Pulsations in the solar wind and on the ground. Planet Space Sci 26(6):547–553

Ponomarenko PV, Fraser BJ, Menk FW, Ables ST, Morris RJ (2002) Cusp-latitude Pc3 spectra: band-limited and power-law components. Ann Geophys 20(10):1539–1551

Ponomarenko PV, Menk FW, Waters CL, Sciffer MD (2005) Pc3-4 ULF waves observed by the SuperDARN TIGER radar. Ann Geophys 23(4):1271–1280

Ponomarenko PV, Walters CL, St-Maurice JP (2010) Upstream Pc3-4 waves: experimental evidence of propagation to the nightside plasmapause/plasmatrough. Geophys Res Lett 37(22):L22102

Poulter EM, Nielsen E (1982) The hydromagnetic oscillation of individual shells of the geomagnetic field. J Geophys Res Space Phys 87(a12):432–438

Rae IJ, Murphy KR, Watt CEJ, Halford AJ, Mann IR, Ozeke LG, Sibeck DG, Clilverd MA, Rodger CJ, Degeling AW, Forsyth C, Singer HJ (2018) The role of localized compressional ultra-low frequency waves in energetic electron precipitation. J Geophys Res Space Phys 123(3):1900–1914

Rasinkangas R, Mursula K (1998) Modulation of magnetospheric EMIC waves by Pc 3 pulsations of upstream origin. Geophys Res Lett 25(6):869–872

Raspopov OM, Lanzerotti LJ (1976) Investigation of Pc 3 frequency geomagnetic pulsations in conjugate areas around l = 4: a review of some ussr and U.S. results. Rev Geophys 14(4):577–589

Regi M, Francia P, De Lauretis M, Glassmeier KH, Villante U (2013) Coherent transmission of upstream waves to polar latitudes through magnetotail lobes. J Geophys Res Space Phys 118(11):6955–6963

Regi M, De Lauretis M, Francia P, Villante U (2014) The propagation of ULF waves from the Earth’s foreshock region to ground: the case study of 15 February 2009. Earth Planets Space 66:43

Retinò A, Khotyaintsev Y, Le Contel O, Marcucci MF, Plaschke F, Vaivads A, Angelopoulos V, Blasi P, Burch J, De Keyser J, Dunlop M, Dai L, Eastwood J, Fu H, Haaland S, Hoshino M, Johlander A, Kepko L, Kucharek H, Lapenta G, Lavraud B, Malandraki O, Matthaeus W, McWilliams K, Petrukovich A, Pinçon J-L, Saito Y, Sorriso-Valvo L, Vainio R, Wimmer-Schweingruber R (2022) Particle energization in space plasmas: towards a multi-point, multi-scale plasma observatory. Exp Astron 54(2–3):427–471

Richardson IG (2018) Solar wind stream interaction regions throughout the heliosphere. Living Rev Sol Phys 15(1):1 PubMed PMC

Richardson IG, Cane HV (2012) Near-Earth solar wind flows and related geomagnetic activity during more than four solar cycles (1963-2011). J Space Weather Space Clim 2:A02

Romanelli N, DiBraccio GA (2021) Occurrence rate of ultra-low frequency waves in the foreshock of Mercury increases with heliocentric distance. Nat Commun 12:6748 PubMed PMC

Romanelli N, DiBraccio G, Gershman D, Le G, Mazelle C, Meziane K, Boardsen S, Slavin J, Raines J, Glass A, Espley J (2020) Upstream ultra-low frequency waves observed by MESSENGER’s magnetometer: implications for particle acceleration at Mercury’s bow shock. Geophys Res Lett 47(9):e87350

Rusaitis L, Khurana KK, Kivelson MG, Walker RJ (2021) Quasiperiodic 1 hour Alfvén wave resonances in Saturn’s magnetosphere: theory for a realistic plasma/field model. Geophys Res Lett 48(7):e90967

Russell CT (1989) ULF waves in the Mercury magnetosphere. Geophys Res Lett 16(11):1253–1256

Russell CT (1994) Planetary upstream waves. In: Solar wind sources of magnetospheric ultra-low-frequency waves. Washington DC American geophysical union geophysical monograph series, vol 81, pp 75–86

Russell CT, Hoppe MM (1981) The dependence of upstream wave periods on the interplanetary magnetic field strength. Geophys Res Lett 8(6):615–617

Russell CT, Hoppe MM (1983) Upstream waves and particles. Space Sci Rev 34(2):155–172

Russell CT, Childers DD, Coleman PJ Jr (1971) Ogo 5 observations of upstream waves in the interplanetary medium: discrete wave packets. J Geophys Res 76:845

Russell CT, Luhmann JG, Odera TJ, Stuart WF (1983) The rate of occurrence of dayside Pc 3, 4 pulsations: the [Image: see text]-value dependence of the IMF cone angle effect. Geophys Res Lett 10(8):663–666

Saito T (1964) Mechanisms of geomagnetic continuous pulsations and physical states of the exosphere. J Geomagn Geoelectr 16(2):115–151

Sakaguchi K, Miyoshi Y, Spanswick E, Donovan E, Mann IR, Jordanova V, Shiokawa K, Connors M, Green JC (2012) Visualization of ion cyclotron wave and particle interactions in the inner magnetosphere via THEMIS-ASI observations. J Geophys Res Space Phys 117(A10):A10204

Samson JC, Harrold BG, Ruohoniemi JM, Greenwald RA, Walker ADM (1992) Field line resonances associated with mhd waveguides in the magnetosphere. Geophys Res Lett 19(5):441–444

Sarris T, Li X, Singer H (2009a) A long-duration narrowband Pc5 pulsation. J Geophys Res Space Phys 114(A1):A01213

Sarris TE, Liu W, Kabin K, Li X, Elkington SR, Ergun R, Rankin R, Angelopoulos V, Bonnell J, Glassmeier KH, Auster U (2009c) Characterization of ULF pulsations by THEMIS. Geophys Res Lett 36(4):L04104

Sarris T, Wright A, Li X (2009b) Observations and analysis of Alfvén wave phase mixing in the Earth’s magnetosphere. J Geophys Res Space Phys 114(A3)

Sarris T, Liu W, Li X, Kabin K, Talaat E, Rankin R, Angelopoulos V, Bonnell J, Glassmeier K-H (2010) Themis observations of the spatial extent and pressure-pulse excitation of field line resonances. Geophys Res Lett 37(15):L15104

Schäfer S, Glassmeier KH, Narita Y, Fornaçon KH, Dandouras I, Fränz M (2005) Statistical phase propagation and dispersion analysis of low frequency waves in the magnetosheath. Ann Geophys 23(10):3339–3349

Scholer M (1993) Upstream waves, shocklets, short large-amplitude magnetic structures and the cyclic behavior of oblique quasi-parallel collisionless shocks. J Geophys Res 98(A1):47–58

Scholer M, Burgess D (1992) The role of upstream waves in supercritical quasi-parallel shock re-formation. J Geophys Res 97(A6):8319–8326

Scholer M, Terasawa T (1990) Ion reflection and dissipation at quasi-parallel collisionless shocks. Geophys Res Lett 17(2):119–122

Scholer M, Fujimoto M, Kucharek H (1993) Two-dimensional simulations of supercritical quasi-parallel shocks: upstream waves, downstream waves, and shock re-formation. J Geophys Res 98(A11):18971–18984

Scholer M, Kucharek H, Shinohara I (2003) Short large-amplitude magnetic structures and whistler wave precursors in a full-particle quasi-parallel shock simulation. J Geophys Res 108:1273

Schwartz SJ (1991) Magnetic field structures and related phenomena at quasi-parallel shocks. Adv Space Res 11:231–240

Schwartz SJ, Burgess D (1984) On the theoretical/observational comparison of field-aligned ion beams in the Earth’s foreshock. J Geophys Res 89(A4):2381–2384

Schwartz SJ, Burgess D (1991) Quasi-parallel shocks - a patchwork of three-dimensional structures. Geophys Res Lett 18:373–376

Schwartz SJ, Thomsen MF, Gosling JT (1983) Ions upstream of the Earth’s bow shock: a theoretical comparison of alternative source populations. J Geophys Res 88(A3):2039–2047

Schwartz SJ, Burgess D, Wilkinson WP, Kessel RL, Dunlop M, Luehr H (1992) Observations of short large-amplitude magnetic structures at a quasi-parallel shock. J Geophys Res 97:4209–4227

Sentman DD, Edmiston JP, Frank LA (1981) Instabilities of low frequency, parallel propagating electromagnetic waves in the Earth’s foreshock region. J Geophys Res 86:7487–7497

Shan L, Lu Q, Wu M, Gao X, Huang C, Zhang T, Wang S (2014) Transmission of large-amplitude ULF waves through a quasi-parallel shock at Venus. J Geophys Res Space Phys 119(1):237–245

Shan L, Lu Q, Mazelle C, Huang C, Zhang T, Wu M, Gao X, Wang S (2015) The shape of the Venusian bow shock at solar minimum and maximum: revisit based on VEX observations. Planet Space Sci 109:32–37

Shan L, Mazelle C, Meziane K, Delva M, Lu Q, Ge YS, Du A, Zhang T (2016) Characteristics of quasi-monochromatic ULF waves in the Venusian foreshock. J Geophys Res Space Phys 121(8):7385–7397

Shan L, Mazelle C, Meziane K, Romanelli N, Ge YS, Du A, Lu Q, Zhang T (2018) The quasi-monochromatic ULF wave boundary in the Venusian foreshock: Venus express observations. J Geophys Res Space Phys 123(1):374–384

Shan L, Ge Y, Du A (2020) A case study of large-amplitude ULF waves in the Martian foreshock. Earth Planet Phys 4(1):45–50

Shen X-C, Shi Q, Wang B, Zhang H, Hudson MK, Nishimura Y, Hartinger MD, Tian A, Zong Q-G, Rae IJ, Degeling AW (2018) Dayside magnetospheric and ionospheric responses to a foreshock transient on 25 June 2008: 1. Flr observed by satellite and ground-based magnetometers. J Geophys Res Space Phys 123(8):6335–6346

Shevyrev NN, Zastenker GN, Eiges PE, Richardson JD (2006) Low frequency waves observed by Interball-1 in foreshock and magnetosheath. Adv Space Res 37(8):1516–1521

Shevyrev NN, Zastenker GN, Du J (2007) Statistics of low-frequency variations in solar wind, foreshock and magnetosheath: INTERBALL-1 and CLUSTER data. Planet Space Sci 55(15):2330–2335

Shi F, Lin Y, Wang X (2013) Global hybrid simulation of mode conversion at the dayside magnetopause. J Geophys Res Space Phys 118(10):6176–6187

Shi F, Cheng L, Lin Y, Wang X (2017) Foreshock wave interaction with the magnetopause: signatures of mode conversion. J Geophys Res Space Phys 122(7):7057–7076

Shi X, Ruohoniemi JM, Baker JBH, Lin D, Bland EC, Hartinger MD, Scales WA (2018) Survey of ionospheric Pc3-5 ULF wave signatures in SuperDARN high time resolution data. J Geophys Res Space Phys 123(5):4215–4231 PubMed PMC

Shi X, Hartinger MD, Baker JBH, Ruohoniemi JM, Lin D, Xu Z, Coyle S, Kunduri BSR, Kilcommons LM, Willer A (2020) Multipoint conjugate observations of dayside ULF waves during an extended period of radial IMF. J Geophys Res Space Phys 125(11):e28364

Shi F, Lin Y, Wang X, Wang B, Nishimura Y (2021) 3-D global hybrid simulations of magnetospheric response to foreshock processes. Earth Planets Space 73(1):138

Shue JH, Song P, Russell CT, Steinberg JT, Chao JK, Zastenker G, Vaisberg OL, Kokubun S, Singer HJ, Detman TR, Kawano H (1998) Magnetopause location under extreme solar wind conditions. J Geophys Res 103(A8):17691–17700

Sibeck DG, Lee SH, Omidi N, Angelopoulos V (2021) Foreshock cavities: direct transmission through the bow shock. J Geophys Res Space Phys 126(5):e29201

Singer HJ, Russell CT, Kivelson MG, Greenstadt EW, Olson JV (1977) Evidence for the control of Pc 3, 4 magnetic pulsations by the solar wind velocity. Geophys Res Lett 4(9):377–379

Singer HJ, Southwood DJ, Walker RJ, Kivelson MG (1981) Alfven wave resonances in a realistic magnetospheric magnetic field geometry. J Geophys Res Space Phys 86(A6):4589–4596

Snekvik K, Tanskanen EI, Kilpua EKJ (2013) An automated identification method for Alfvénic streams and their geoeffectiveness. J Geophys Res Space Phys 118(10):5986–5998

Soucek J, Escoubet CP, Grison B (2015) Magnetosheath plasma stability and ULF wave occurrence as a function of location in the magnetosheath and upstream bow shock parameters. J Geophys Res Space Phys 120(4):2838–2850

Southwood DJ (1968) The hydromagnetic stability of the magnetospheric boundary. Planet Space Sci 16(5):587–605

Southwood DJ (1974) Some features of field line resonances in the magnetosphere. Planet Space Sci 22(3):483–491

Suni J, Palmroth M, Turc L, Battarbee M, Johlander A, Tarvus V, Alho M, Bussov M, Dubart M, Ganse U, Grandin M, Horaites K, Manglayev T, Papadakis K, Pfau-Kempf Y, Zhou H (2021) Connection between foreshock structures and the generation of magnetosheath jets: vlasiator results. Geophys Res Lett 48(20):e95655

Szuberla CAL, Olson JV, Engebretson MJ, Fraser BJ, Ables S, Hughes WJ (1998) Interstation Pc3 coherence at cusp latitudes. Geophys Res Lett 25(13):2381–2384

Takahashi K (2016) ULF waves in the inner magnetosphere. In: Low-frequency waves in space plasmas. Washington DC American geophysical union geophysical monograph series, vol 216, pp 51–63

Takahashi K, Anderson BJ (1992) Distribution of ULF energy (f <= 80 mHz) in the inner magnetosphere: a statistical analysis of AMPTE CCE magnetic field data. J Geophys Res 97(A7):10751–10773

Takahashi K, Denton RE (2007) Magnetospheric seismology using multiharmonic toroidal waves observed at geosynchronous orbit. J Geophys Res 112(A5):A05204

Takahashi K, Denton RE (2021) Nodal structure of toroidal standing Alfvén waves and its implication for field line mass density distribution. J Geophys Res Space Phys 126(5):e2020JA028981

Takahashi K, Heilig B (2019) [Image: see text] versus time structures of dayside magnetic pulsations detected by the European quasi-meridional magnetometer array. J Geophys Res Space Phys 124(8):6566–6584

Takahashi K, McPherron RL, Greenstadt EW, Neeley CA (1981) Factors controlling the occurrence of Pc 3 magnetic pulsations at synchronous orbit. J Geophys Res 86(A7):5472–5484

Takahashi K, McPherron RL, Terasawa T (1984) Dependence of the spectrum of Pc 3-4 pulsations on the interplanetary magnetic field. J Geophys Res 89(A5):2770–2780

Takahashi K, Anderson BJ, Newell PT, Yamamoto T, Sato N (1994) Propagation of compressional Pc 3 pulsations from space to the ground: a case study using multipoint measurements. In: Solar wind sources of magnetospheric ultra-low-frequency waves. Washington DC American geophysical union geophysical monograph series, vol 81, pp 355–363

Takahashi K, Denton RE, Anderson RR, Hughes WJ (2006) Mass density inferred from toroidal wave frequencies and its comparison to electron density. J Geophys Res Space Phys 111(A1):A01201

Takahashi K, Denton RE, Singer HJ (2010) Solar cycle variation of geosynchronous plasma mass density derived from the frequency of standing Alfvén waves. J Geophys Res Space Phys 115:A07207

Takahashi K, Denton RE, Kurth W, Kletzing C, Wygant J, Bonnell J, Dai L, Min K, Smith CW, MacDowall R (2015) Externally driven plasmaspheric ulf waves observed by the Van Allen Probes. J Geophys Res Space Phys 120(1):526–552

Takahashi K, Hartinger MD, Malaspina DM, Smith CW, Koga K, Singer HJ, Frühauff D, Baishev DG, Moiseev AV, Yoshikawa A (2016) Propagation of ULF waves from the upstream region to the midnight sector of the inner magnetosphere. J Geophys Res Space Phys 121:8428–8447

Takahashi K, Vellante M, Del Corpo A, Claudepierre SG, Kletzing C, Wygant J, Koga K (2020) Multiharmonic toroidal standing Alfvén waves in the midnight sector observed during a geomagnetically quiet period. J Geophys Res Space Phys 125(3)

Takahashi K, Turc L, Kilpua E, Takahashi N, Dimmock A, Kajdic P, Palmroth M, Pfau-Kempf Y, Soucek J, Motoba T, Hartinger MD, Artemyev A, Singer H, Ganse U, Battarbee M (2021) Propagation of ultralow-frequency waves from the ion foreshock into the magnetosphere during the passage of a magnetic cloud. J Geophys Res Space Phys 126(2):e2020JA028474

Tamao T (1964) The structure of three-dimensional hydromagnetic waves in a uniform cold plasma. J Geomagn Geoelectr 16(2):89–114

Tanaka YM, Yumoto K, Yoshikawa A, Shinohara M, Kawano H, Kitamura TI (2004) Longitudinal structure of Pc3 pulsations on the ground near the magnetic equator. J Geophys Res Space Phys 109(A3):A03201

Tarvus V, Turc L, Battarbee M, Suni J, Blanco-Cano X, Ganse U, Pfau-Kempf Y, Alho M, Dubart M, Grandin M, Johlander A, Papadakis K, Palmroth M (2021) Foreshock cavitons and spontaneous hot flow anomalies: a statistical study with a global hybrid-Vlasov simulation. Ann Geophys 39(5):911–928

Thomas VA, Winske D, Omidi N (1990) Re-forming supercritical quasi-parallel shocks 1. One- and two-dimensional simulations. J Geophys Res Space Phys 95(A11):18809–18819

Thomas VA, Winske D, Thomsen MF (1995) Simulation of upstream pressure pulse propagation through the bow shock. J Geophys Res Space Phys 100(A12):23481–23488

Troitskaya VA (1994) Discoveries of sources of Pc 2-4 waves—a review of research in the former USSR. In: Washington DC American Geophysical Union Geophysical Monograph Series, vol 81, pp 45–54

Troitskaya VA, Bol’Shakova OV (1988) Diagnostics of the magnetosphere using multipoint measurements of ULF-waves. Adv Space Res 8(9–10):413–425

Troitskaya VA, Plyasova-Bakunina TA, Gul’Elmi AV (1971) The connection of Pc2-4 pulsations with the interplanetary magnetic field. Dokl Akad Nauk 197:1312–1314

Trotta D, Hietala H, Horbury T, Dresing N, Vainio R, Wilson L, Plotnikov I, Kilpua E (2023) Multi-spacecraft observations of shocklets at an interplanetary shock. Mon Not R Astron Soc 520(1):437–445

Tsubouchi K, Lembège B (2004) Full particle simulations of short large-amplitude magnetic structures (SLAMS) in quasi-parallel shocks. J Geophys Res 109:A02114

Tsurutani BT, Gonzalez WD (1987) The cause of high-intensity long-duration continuous AE activity (HILDCAAs): interplanetary Alfvén wave trains. Planet Space Sci 35(4):405–412

Tsurutani BT, Smith EJ, Jones DE (1983) Waves observed upstream of interplanetary shocks. J Geophys Res 88(A7):5645–5656

Turc L, Escoubet CP, Fontaine D, Kilpua EKJ, Enestam S (2016) Cone angle control of the interaction of magnetic clouds with the Earth’s bow shock. Geophys Res Lett 43(10):4781–4789

Turc L, Ganse U, Pfau-Kempf Y, Hoilijoki S, Battarbee M, Juusola L, Jarvinen R, Brito T, Grandin M, Palmroth M (2018) Foreshock Properties at Typical and Enhanced Interplanetary Magnetic Field Strengths: Results from Hybrid-Vlasov Simulations. J Geophys Res Space Phys

Turc L, Roberts OW, Archer MO, Palmroth M, Battarbee M, Brito T, Ganse U, Grandin M, Pfau-Kempf Y, Escoubet CP, Dandouras I (2019) First observations of the disruption of the Earth’s foreshock wave field during magnetic clouds. Geophys Res Lett 46(22):12644–12653

Turc L, Tarvus V, Dimmock AP, Battarbee M, Ganse U, Johlander A, Grandin M, Pfau-Kempf Y, Dubart M, Palmroth M (2020) Asymmetries in the Earth’s dayside magnetosheath: results from global hybrid-Vlasov simulations. Ann Geophys 38(5):1045–1062

Turc L, Zhou H, Tarvus V, Ala-Lahti M, Battarbee M, Pfau-Kempf Y, Johlander A, Ganse U, Dubart M, George H, Grandin M, Horaites K, Tesema F, Suni J, Alho M, Papadakis K, Palmroth M (2022) A global view of Pc3 wave activity in near-Earth space: results from hybrid-Vlasov simulations. Front Astron Space Sci 9:989369

Turc L, Roberts OW, Verscharen D, Dimmock AP, Kajdič P, Palmroth M, Pfau-Kempf Y, Johlander A, Dubart M, Kilpua EKJ, Soucek J, Takahashi K, Takahashi N, Battarbee M, Ganse U (2023) Transmission of foreshock waves through Earth’s bow shock. Nat Phys 19(1):78–86 PubMed PMC

Vellante M, Villante U, De Lauretis M, Barchi G (1996) Solar cycle variation of the dominant frequencies of Pc3 geomagnetic pulsations at L = 1.6. Geophys Res Lett 23(12):1505–1508

Vellante M, Lühr H, Zhang TL, Wesztergom V, Villante U, de Lauretis M, Piancatelli A, Rother M, Schwingenschuh K, Koren W, Magnes W (2004) Ground/satellite signatures of field line resonance: a test of theoretical predictions. J Geophys Res Space Phys 109(A6):A06210

Vero J, Hollo L (1978) Connections between interplanetary magnetic field and geomagnetic pulsations. J Atmos Terr Phys 40:857–865

Villante U, Tiberi P (2016) Occurrence and characteristics of nighttime ULF waves at low latitude: the results of a comprehensive analysis. J Geophys Res Space Phys 121(5):4300–4315

Villante U, Lepidi S, Francia P, Vellante M, Meloni A, Lepping RP, Mariani F (1999) Pc3 pulsations during variable IMF conditions. Ann Geophys 17(4):490–496

Villante U, Vellante M, de Sanctis G (2000) An analysis of Pc3 and Pc4 pulsations at Terra Nova Bay (Antarctica). Ann Geophys 18(11):1412–1421

Villante U, De Paulis C, Francia P (2011) The transmission of upstream waves to the magnetosphere: an analysis at widely separated ground stations. J Geophys Res Space Phys 116(A6):A06219

Volwerk M, Kivelson MG, Khurana KK, McPherron RL (1999) Probing Ganymede’s magnetosphere with field line resonances. J Geophys Res 104(A7):14729–14738

Volwerk M, Jia X, Paranicas C, Kurth WS, Kivelson MG, Khurana KK (2013) ULF waves in Ganymede’s upstream magnetosphere. Ann Geophys 31(1):45–59

Vorobjev VG, Yagodkina OI, Sibeck DG, Newell P (1999) Daytime high-latitude auroral pulsations: some morphological features and the region of the magnetospheric source. J Geophys Res 104(A5):10135–10144

Walsh BM, Sibeck DG, Wang Y, Fairfield DH (2012) Dawn-dusk asymmetries in the Earth’s magnetosheath. J Geophys Res Space Phys 117(A12):A12211

Walsh AP, Haaland S, Forsyth C, Keesee AM, Kissinger J, Li K, Runov A, Soucek J, Walsh BM, Wing S, Taylor MGGT (2014) Dawn-dusk asymmetries in the coupled solar wind-magnetosphere-ionosphere system: a review. Ann Geophys 32(7):705–737

Wang C-P, Thorne R, Liu TZ, Hartinger MD, Nagai T, Angelopoulos V, Wygant JR, Breneman A, Kletzing C, Reeves GD, Claudepierre SG, Spence HE (2017) A multispacecraft event study of Pc5 ultralow-frequency waves in the magnetosphere and their external drivers. J Geophys Res Space Phys 122(5):5132–5147

Wang B, Nishimura Y, Zhang H, Shen X-C, Lyons L, Angelopoulos V, Ebihara Y, Weatherwax A, Gerrard AJ, Frey HU (2019) The 2-d structure of foreshock-driven field line resonances observed by themis satellite and ground-based imager conjunctions. J Geophys Res Space Phys 124(8):6792–6811

Wang S, Chen L-J, Ng J, Bessho N, Le G, Fung SF, Gershman DJ, Giles BL (2020b) A case study of nonresonant mode 3-s ulf waves observed by mms. J Geophys Res Space Phys 125(11):e2020JA028557

Wang C-P, Wang X, Liu TZ, Lin Y (2020a) Evolution of a foreshock bubble in the midtail foreshock and impact on the magnetopause: 3-d global hybrid simulation. Geophys Res Lett 47(22):e2020GL089844

Wang C-P, Wang X, Liu TZ, Lin Y (2021) Impact of foreshock transients on the flank magnetopause and magnetosphere and the ionosphere. Front Astron Space Sci 8

Watari S, Vandas M, Watanabe T (2005) Solar cycle variation of long-duration radial interplanetary magnetic field events at 1 AU. J Geophys Res Space Phys 110(A12):A12102

Waters C, Menk F, Fraser B (1991) The resonance structure of low latitude Pc3 geomagnetic pulsations. Geophys Res Lett 18(12):2293–2296

Webb DF, Howard TA (2012) Coronal mass ejections: observations. Living Rev Sol Phys 9(1):3

West HI Jr, Buck RM (1976) Observations of > 100-keV protons in the Earth’s magnetosheath. J Geophys Res 81(4):569

Westphal KO, McKenzie JF (1969) Interaction of magnetoacoustic and entropy waves with normal magnetohydrodynamic shock waves. Phys Fluids 12:1228–1236

Whang YC, Wei F, Du H (1987) Critical angles of incidence for transmission of magnetohydrodynamic waves across shock surfaces. J Geophys Res 92(A11):12036–12044

Wilson LB (2016) Low frequency waves at and upstream of collisionless shocks. In: Low-frequency waves in space plasmas. Washington DC American geophysical union geophysical monograph series, vol 216, pp 269–291

Wilson LB, Cattell CA, Kellogg PJ, Goetz K, Kersten K, Kasper JC, Szabo A, Meziane K (2009) Low-frequency whistler waves and shocklets observed at quasi-perpendicular interplanetary shocks. J Geophys Res Space Phys 114(A10):A10106

Wing S, Johnson JR, Newell PT, Meng CI (2005) Dawn-dusk asymmetries, ion spectra, and sources in the northward interplanetary magnetic field plasma sheet. J Geophys Res Space Phys 110(A8):A08205

Winske D (1985) Hybrid simulation codes with application to shocks and upstream waves. Space Sci Rev 42(1):53–66

Winske D, Leroy MM (1984) Diffuse ions produced by electromagnetic ion beam instabilities. J Geophys Res Space Phys 89(A5):2673–2688

Wolfe A (1980) Dependence of mid-latitude hydromagnetic energy spectra on solar wind speed and interplanetary magnetic field direction. J Geophys Res 85(A11):5977–5982

Wolfe A, Kaufmann RL (1975) MHD wave transmission and production near the magnetopause. J Geophys Res 80(13):1764–1775

Wolfe A, Meloni A, Lanzerotti LJ, Maclennan CG, Bamber J, Venkatesan D (1985) Dependence of hydromagnetic energy spectra near L = 2 and L = 3 on upstream solar wind parameters. J Geophys Res 90(A6):5117–5132

Wolfe A, Venkatesan D, Slawinski R, Maclennan CG (1990) A conjugate area study of Pc 3 pulsations near cusp latitudes. J Geophys Res 95(A7):10695–10698

Wu Q, Rosenberg TJ (1992) High latitude pulsating aurorae revisited. Geophys Res Lett 19(1):69–72

Wu B-H, Mandt ME, Lee LC, Chao JK (1993) Magnetospheric response to solar wind dynamic pressure variations: interaction of interplanetary tangential discontinuities with the bow shock. J Geophys Res 98(A12):21297–21312

Xie Z-K, Zong QG, Ren J, Yue C, Liu Z-Y, Liu J-J, Hu Z-J, Li X-Y, Yin Z-F, Yan Y, Li L, Gjerloev JW (2023) Global ULF waves excited by solar wind dynamic pressure impulses: 1. Timescales and geomagnetic activity dependence. J Geophys Res Space Phys 128(10):e2023JA031813

Yagova NV, Heilig B, Pilipenko VA, Yoshikawa A, Nosikova NS, Yumoto K, Reda J (2017) Nighttime Pc3 pulsations: MM100 and MAGDAS observations. Earth Planets Space 69(1):61

Yamakawa T, Seki K, Amano T, Takahashi N, Miyoshi Y (2020) Excitation of internally driven ULF waves by the drift-bounce resonance with ring current ions based on the drift-kinetic simulation. J Geophys Res Space Phys 125(11):e28231

Yashiro S, Gopalswamy N, Michalek G, St. Cyr OC, Plunkett SP, Rich NB, Howard RA (2004) A catalog of white light coronal mass ejections observed by the SOHO spacecraft. J Geophys Res Space Phys 109(A7):A07105

Yates JN, Southwood DJ, Dougherty MK, Sulaiman AH, Masters A, Cowley SWH, Kivelson MG, Chen CHK, Provan G, Mitchell DG, Hospodarsky GB, Achilleos N, Sorba AM, Coates AJ (2016) Saturn’s quasiperiodic magnetohydrodynamic waves. Geophys Res Lett 43(21):11102–11111

Yeoman TK, Wright DM, Engebretson MJ, Lessard MR, Pilipenko VA, Kim H (2012) Upstream-generated Pc3 ULF wave signatures observed near the Earth’s cusp. J Geophys Res Space Phys 117(A3):A03202

Yumoto K, Saito T, Tsurutani BT, Smith EJ, Akasofu SI (1984) Relationship between the IMF magnitude and Pc 3 magnetic pulsations in the magnetosphere. J Geophys Res 89(A11):9731–9740

Yumoto K, Saito T, Akasofu SI, Tsurutani BT, Smith EJ (1985) Propagation mechanism of daytime Pc 3-4 pulsations observed at synchronous orbit and multiple ground-based stations. J Geophys Res 90(A7):6439–6450

Zhang H, Zong Q (2020) Transient Phenomena at the Magnetopause and Bow Shock and Their Ground Signatures, Chap. 2. American Geophysical Union (AGU), pp 11–37

Zhang J, Richardson IG, Webb DF, Gopalswamy N, Huttunen E, Kasper JC, Nitta NV, Poomvises W, Thompson BJ, Wu CC, Yashiro S, Zhukov AN (2007) Solar and interplanetary sources of major geomagnetic storms (Dst <= −100 nT) during 1996-2005. J Geophys Res Space Phys 112(A10):A10102

Zhang TL, Delva M, Baumjohann W, Volwerk M, Russell CT, Barabash S, Balikhin M, Pope S, Glassmeier KH, Kudela K, Wang C, Vörös Z, Zambelli W (2008) Initial Venus Express magnetic field observations of the Venus bow shock location at solar minimum. Planet Space Sci 56(6):785–789

Zhang H, Sibeck DG, Zong Q-G, Omidi N, Turner D, Clausen LBN (2013) Spontaneous hot flow anomalies at quasi-parallel shocks: 1. Observations. J Geophys Res 118(6):3357–3363

Zhang H, Zong Q, Connor H, Delamere P, Facskó G, Han D, Hasegawa H, Kallio E, Kis Á, Le G, Lembège B, Lin Y, Liu T, Oksavik K, Omidi N, Otto A, Ren J, Shi Q, Sibeck D, Yao S (2022) Dayside transient phenomena and their impact on the magnetosphere and ionosphere. Space Sci Rev 218(5):40 PubMed PMC

Zong Q, Rankin R, Zhou X (2017) The interaction of ultra-low-frequency Pc3-5 waves with charged particles in Earth’s magnetosphere. Rev Mod Plasma Phys 1(1):10

Zou Y, Walsh BM, Chen L-J, Ng J, Shi X, Wang C-P, Lyons LR, Liu J, Angelopoulos V, McWilliams KA, Michael Ruohoniemi J (2022) Unsteady magnetopause reconnection under quasi-steady solar wind driving. Geophys Res Lett 49(1):e96583 PubMed PMC

Find record

Citation metrics

Loading data ...

Archiving options

Loading data ...