Search for dark matter, extra dimensions, and unparticles in monojet events in proton-proton collisions at [Formula: see text][Formula: see text]

. 2015 ; 75 (5) : 235. [epub] 20150529

Status PubMed-not-MEDLINE Jazyk angličtina Země Francie Médium print-electronic

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid26069461

Results are presented from a search for particle dark matter (DM), extra dimensions, and unparticles using events containing a jet and an imbalance in transverse momentum. The data were collected by the CMS detector in proton-proton collisions at the LHC and correspond to an integrated luminosity of 19.7[Formula: see text]at a centre-of-mass energy of 8[Formula: see text]. The number of observed events is found to be consistent with the standard model prediction. Limits are placed on the DM-nucleon scattering cross section as a function of the DM particle mass for spin-dependent and spin-independent interactions. Limits are also placed on the scale parameter [Formula: see text] in the Arkani-Hamed, Dimopoulos, and Dvali (ADD) model of large extra dimensions, and on the unparticle model parameter [Formula: see text]. The constraints on ADD models and unparticles are the most stringent limits in this channel and those on the DM-nucleon scattering cross section are an improvement over previous collider results.

1 Physikalisches Institut RWTH Aachen University Aachen Germany

3 Physikalisches Institut A RWTH Aachen University Aachen Germany

3 Physikalisches Institut B RWTH Aachen University Aachen Germany

Baylor University Waco USA

Benemerita Universidad Autonoma de Puebla Puebla Mexico

Bhabha Atomic Research Centre Mumbai India

Bogazici University Istanbul Turkey

Boston University Boston USA

Brown University Providence USA

Brunel University Uxbridge UK

California Institute of Technology Pasadena USA

Carnegie Mellon University Pittsburgh USA

Centre de Calcul de l'Institut National de Physique Nucleaire et de Physique des Particules CNRS IN2P3 Villeurbanne France

Centro Brasileiro de Pesquisas Fisicas Rio de Janeiro Brazil

Centro de Investigacion y de Estudios Avanzados del IPN Mexico City Mexico

Centro de Investigaciones Energéticas Medioambientales y Tecnológicas Madrid Spain

CERN European Organization for Nuclear Research Geneva Switzerland

Charles University Prague Czech Republic

Cornell University Ithaca USA

Cukurova University Adana Turkey

Department of Physics Faculty of Science Chulalongkorn University Bangkok Thailand

Department of Physics University of Helsinki Helsinki Finland

Deutsches Elektronen Synchrotron Hamburg Germany

DSM IRFU CEA Saclay Gif sur Yvette France

E Andronikashvili Institute of Physics Academy of Science Tbilisi Georgia

Faculty of Electrical Engineering Mechanical Engineering and Naval Architecture University of Split Split Croatia

Faculty of Physics and Vinca Institute of Nuclear Sciences University of Belgrade Belgrade Serbia

Faculty of Science University of Split Split Croatia

Fairfield University Fairfield USA

Fermi National Accelerator Laboratory Batavia USA

Florida Institute of Technology Melbourne USA

Florida International University Miami USA

Florida State University Tallahassee USA

Ghent University Ghent Belgium

Helsinki Institute of Physics Helsinki Finland

Imperial College London UK

INFN Laboratori Nazionali di Frascati Frascati Italy

INFN Sezione di Bari Università di Bari Politecnico di Bari Bari Italy

INFN Sezione di Bologna Università di Bologna Bologna Italy

INFN Sezione di Catania Università di Catania CSFNSM Catania Italy

INFN Sezione di Firenze Università di Firenze Florence Italy

INFN Sezione di Genova Università di Genova Genoa Italy

INFN Sezione di Milano Bicocca Università di Milano Bicocca Milan Italy

INFN Sezione di Napoli Università di Napoli 'Federico II' Università della Basilicata Naples Italy

INFN Sezione di Padova Università di Padova Università di Trento Padua Italy

INFN Sezione di Pavia Università di Pavia Pavia Italy

INFN Sezione di Perugia Università di Perugia Perugia Italy

INFN Sezione di Pisa Università di Pisa Scuola Normale Superiore di Pisa Pisa Italy

INFN Sezione di Roma Università di Roma Rome Italy

INFN Sezione di Torino Università di Torino Università del Piemonte Orientale Turin Italy

INFN Sezione di Trieste Università di Trieste Trieste Italy

Institut de Physique Nucléaire de Lyon Université de Lyon Université Claude Bernard Lyon 1 CNRS IN2P3 Villeurbanne France

Institut für Experimentelle Kernphysik Karlsruhe Germany

Institut für Hochenergiephysik der OeAW Vienna Austria

Institut Pluridisciplinaire Hubert Curien Université de Strasbourg Université de Haute Alsace Mulhouse CNRS IN2P3 Strasbourg France

Institute for Nuclear Research and Nuclear Energy Sofia Bulgaria

Institute for Nuclear Research Moscow Russia

Institute for Particle Physics ETH Zurich Zurich Switzerland

Institute for Research in Fundamental Sciences Tehran Iran

Institute for Theoretical and Experimental Physics Moscow Russia

Institute for Universe and Elementary Particles Chonnam National University Kwangju Korea

Institute of Experimental Physics Faculty of Physics University of Warsaw Warsaw Poland

Institute of High Energy Physics Beijing China

Institute of Nuclear and Particle Physics NCSR Demokritos Aghia Paraskevi Greece

Institute of Nuclear Research ATOMKI Debrecen Hungary

Institute Rudjer Boskovic Zagreb Croatia

Instituto de Física de Cantabria CSIC Universidad de Cantabria Santander Spain

Istanbul Technical University Istanbul Turkey

Johns Hopkins University Baltimore USA

Joint Institute for Nuclear Research Dubna Russia

Kangwon National University Chunchon Korea

Kansas State University Manhattan USA

Korea University Seoul Korea

Kyungpook National University Taegu Korea

Laboratoire Leprince Ringuet Ecole Polytechnique IN2P3 CNRS Palaiseau France

Laboratório de Instrumentação e Física Experimental de Partículas Lisbon Portugal

Lappeenranta University of Technology Lappeenranta Finland

Lawrence Livermore National Laboratory Livermore USA

Massachusetts Institute of Technology Cambridge USA

National Central University Chung Li Taiwan

National Centre for Nuclear Research Swierk Poland

National Centre for Particle and High Energy Physics Minsk Belarus

National Centre for Particle Physics Universiti Malaya Kuala Lumpur Malaysia

National Centre for Physics Quaid 1 Azam University Islamabad Pakistan

National Institute of Chemical Physics and Biophysics Tallinn Estonia

National Institute of Science Education and Research Bhubaneswar India

National Scientific Center Kharkov Institute of Physics and Technology Kharkov Ukraine

National Taiwan University Taipei Taiwan

Northeastern University Boston USA

Northwestern University Evanston USA

P N Lebedev Physical Institute Moscow Russia

Panjab University Chandigarh India

Paul Scherrer Institut Villigen Switzerland

Petersburg Nuclear Physics Institute Gatchina St Petersburg Russia

Physics Department Middle East Technical University Ankara Turkey

Princeton University Princeton USA

Purdue University Calumet Hammond USA

Purdue University West Lafayette USA

Rice University Houston USA

Rutgers The State University of New Jersey Piscataway USA

Rutherford Appleton Laboratory Didcot UK

Saha Institute of Nuclear Physics Kolkata India

Skobeltsyn Institute of Nuclear Physics Lomonosov Moscow State University Moscow Russia

State Key Laboratory of Nuclear Physics and Technology Peking University Beijing China

State Research Center of Russian Federation Institute for High Energy Physics Protvino Russia

State University of New York at Buffalo Buffalo USA

Sungkyunkwan University Suwon Korea

Tata Institute of Fundamental Research Mumbai India

Texas A and M University College Station USA

Texas Tech University Lubbock USA

The Ohio State University Columbus USA

The Rockefeller University New York USA

The University of Alabama Tuscaloosa USA

The University of Iowa Iowa City USA

The University of Kansas Lawrence USA

Universidad Autónoma de Madrid Madrid Spain

Universidad Autónoma de San Luis Potosí San Luis Potosí Mexico

Universidad de Los Andes Bogotá Colombia

Universidad de Oviedo Oviedo Spain

Universidad Iberoamericana Mexico City Mexico

Universidade do Estado do Rio de Janeiro Rio de Janeiro Brazil

Universidade Estadual Paulista Universidade Federal do ABC São Paulo Brazil

Universität Zürich Zurich Switzerland

Université Catholique de Louvain Louvain la Neuve Belgium

Université de Mons Mons Belgium

Université Libre de Bruxelles Brussels Belgium

Universiteit Antwerpen Antwerp Belgium

University College Dublin Dublin Ireland

University of Athens Athens Greece

University of Auckland Auckland New Zealand

University of Bristol Bristol UK

University of California Davis Davis USA

University of California Los Angeles USA

University of California Riverside Riverside USA

University of California San Diego La Jolla USA

University of California Santa Barbara Santa Barbara USA

University of Canterbury Christchurch New Zealand

University of Colorado at Boulder Boulder USA

University of Cyprus Nicosia Cyprus

University of Debrecen Debrecen Hungary

University of Delhi Delhi India

University of Florida Gainesville USA

University of Hamburg Hamburg Germany

University of Illinois at Chicago Chicago USA

University of Ioánnina Ioannina Greece

University of Maryland College Park USA

University of Minnesota Minneapolis USA

University of Mississippi Oxford USA

University of Nebraska Lincoln Lincoln USA

University of Notre Dame Notre Dame USA

University of Puerto Rico Mayagüez USA

University of Rochester Rochester USA

University of Seoul Seoul Korea

University of Sofia Sofia Bulgaria

University of Tennessee Knoxville USA

University of Virginia Charlottesville USA

University of Wisconsin Madison USA

Vanderbilt University Nashville USA

Vilnius University Vilnius Lithuania

Vrije Universiteit Brussel Brussels Belgium

Wayne State University Detroit USA

Wigner Research Centre for Physics Budapest Hungary

Yerevan Physics Institute Yerevan Armenia

Zobrazit více v PubMed

Trimble V. Existence and nature of dark matter in the universe. Ann. Rev. Astron. Astrophys. 1987;25:425. doi: 10.1146/annurev.aa.25.090187.002233. DOI

Feng JL. Dark matter candidates from particle physics and methods of detection. Ann. Rev. Astron. Astrophys. 2010;48:495. doi: 10.1146/annurev-astro-082708-101659. DOI

G. Hinshaw et al., Nine-year Wilkinson microwave anisotropy probe (WMAP) observations: cosmological parameter results. Astrophys. J. Suppl. Ser. 208(2), 19 (2013). doi:10.1088/0067-0049/208/2/19

Collaboration Planck. Planck 2013 results. XVI. Cosmological parameters. Astron. Astrophys. 2014;571:A16. doi: 10.1051/0004-6361/201322984. DOI

Farrar GR, Fayet P. Phenomenology of the production, decay, and detection of new hadronic states associated with supersymmetry. Phys. Lett. B. 1978;76:575. doi: 10.1016/0370-2693(78)90858-4. DOI

Beltran M, et al. Maverick dark matter at colliders. JHEP. 2010;09:037. doi: 10.1007/JHEP09(2010)037. DOI

Goodman J, et al. Constraints on dark matter from colliders. Phys. Rev. D. 2010;82:116010. doi: 10.1103/PhysRevD.82.116010. DOI

Goodman J, et al. Constraints on light Majorana dark matter from colliders. Phys. Lett. B. 2011;695:185. doi: 10.1016/j.physletb.2010.11.009. DOI

Bai Y, Fox PJ, Harnik R. The Tevatron at the frontier of dark matter direct detection. JHEP. 2010;12:048. doi: 10.1007/JHEP12(2010)048. DOI

CDF Collaboration, A search for dark matter in events with one jet and missing transverse energy in PubMed

CMS Collaboration, Search for dark matter and large extra dimensions in monojet events in pp collisions at

ATLAS Collaboration, Search for dark matter candidates and large extra dimensions in events with a jet and missing transverse momentum with the ATLAS detector. JHEP 04, 075 (2013). doi:10.1007/JHEP04(2013)075. arXiv:1210.4491 PubMed

N. Arkani-Hamed, S. Dimopoulos, G. Dvali, The hierarchy problem and new dimensions at a millimeter. Phys. Lett. B 429, 263 (1998). doi:10.1016/S0370-2693(98)00466-3. arXiv:hep-ph/9803315

N. Arkani-Hamed, S. Dimopoulos, G. Dvali, Phenomenology, astrophysics and cosmology of theories with submillimeter dimensions and TeV scale quantum gravity. Phys. Rev. D 59, 086004 (1999). doi:10.1103/PhysRevD.59.086004. arXiv:hep-ph/9807344

I. Antoniadis, K. Benakli, M. Quiros, Direct collider signatures of large extra dimensions. Phys. Lett. B 460, 176 (1999). doi:10.1016/S0370-2693(99)00764-9. arXiv:hep-ph/9905311

G. Giudice, R. Rattazzi, J. Wells, Quantum gravity and extra dimensions at high-energy colliders. Nucl. Phys. B 544, 3 (1999). doi:10.1016/S0550-3213(99)00044-9. arXiv:hep-ph/9811291

E. Mirabelli, M. Perelstein, M. Peskin, Collider signatures of new large space dimensions. Phys. Rev. Lett. 82, 2236 (1999). doi:10.1103/PhysRevLett.82.2236. arXiv:hep-ph/9811337

Witten E. Mass hierarchies in supersymmetric theories. Phys. Lett. B. 1981;105:267. doi: 10.1016/0370-2693(81)90885-6. DOI

OPAL Collaboration, Photonic events with missing energy in e

ALEPH Collaboration, Single- and multi-photon production in e

L3 Collaboration, Single- and multi-photon events with missing energy in e

CDF Collaboration, Search for large extra dimensions in final states containing one photon or jet and large missing transverse energy produced in PubMed

D0 Collaboration, Search for large extra dimensions via single photon plus missing energy final states at PubMed

CMS Collaboration, Search for new physics with a mono-jet and missing transverse energy in pp collisions at PubMed

ATLAS Collaboration, Search for new phenomena with the monojet and missing transverse momentum signature using the ATLAS detector in

H. Georgi, Unparticle physics. Phys. Rev. Lett. 98, 221601 (2007). doi:10.1103/PhysRevLett.98.221601. arXiv:hep-ph/0703260 PubMed

CMS Collaboration, The CMS experiment at the CERN LHC. JINST 3, S08004 (2008). doi:10.1088/1748-0221/3/08/S08004

CMS Collaboration, Particle-flow event reconstruction in CMS and performance for Jets, Taus, and

CMS Collaboration, Commissioning of the particle-flow event reconstruction with the first LHC collisions recorded in the CMS detector. CMS Physics Analysis Summary CMS-PAS-PFT-10-001 (2010)

Cacciari M, Salam GP, Soyez G. The anti- DOI

CMS Collaboration, Energy calibration and resolution of the CMS electromagnetic calorimeter in pp collisions at

CMS Collaboration, Determination of jet energy calibration and transverse momentum resolution in CMS. JINST 6, P11002 (2011). doi:10.1088/1748-0221/6/11/P11002. arXiv:1107.4277

Cacciari M, Salam GP, Soyez G. FastJet user manual. Eur. Phys. J. C. 2012;72:1896. doi: 10.1140/epjc/s10052-012-1896-2. DOI

CMS Collaboration, CMS tracking performance results from early LHC operation. Eur. Phys. J. C 70, 1165 (2010). doi:10.1140/epjc/s10052-010-1491-3. arXiv:1007.1988

CMS Collaboration, Performance of CMS muon reconstruction in pp collision events at

CMS Collaboration, Performance of

Alwall J, et al. MadGraph/MadEvent v4: the new web generation. JHEP. 2007;09:028. doi: 10.1088/1126-6708/2007/09/028. DOI

T. Sjöstrand, S. Mrenna, P.Z. Skands, PYTHIA 6.4 physics and manual. JHEP 05, 026 (2006). doi:10.1088/1126-6708/2006/05/026. arXiv:hep-ph/0603175

R. Field, Early LHC underlying event data - findings and surprises (2010). arXiv:1010.3558

J. Pumplin et al., New generation of parton distributions with uncertainties from global QCD analysis. JHEP 07, 012 (2002). doi:10.1088/1126-6708/2002/07/012. arXiv:hep-ph/0201195

Sjöstrand T, Mrenna S, Skands PZ. A brief introduction to PYTHIA 8.1. Comput. Phys. Commun. 2008;178:852. doi: 10.1016/j.cpc.2008.01.036. DOI

Ask S, et al. Real emission and virtual exchange of gravitons and unparticles in PYTHIA8. Comput. Phys. Commun. 2010;181:1593. doi: 10.1016/j.cpc.2010.05.013. DOI

Corke R, Sjöstrand T. Interleaved parton showers and tuning prospects. JHEP. 2011;03:032. doi: 10.1007/JHEP03(2011)032. DOI

Alwall J, et al. MadGraph 5: going beyond. JHEP. 2011;06:128. doi: 10.1007/JHEP06(2011)128. DOI

Alwall J, et al. The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations. JHEP. 2014;07:079. doi: 10.1007/JHEP07(2014)079. DOI

Frixione S, Nason P, Oleari C. Matching NLO QCD computations with parton shower simulations: the POWHEG method. JHEP. 2007;11:070. doi: 10.1088/1126-6708/2007/11/070. DOI

S. Alioli, P. Nason, C. Oleari, E. Re, NLO single-top production matched with shower in POWHEG:

GEANT4 Collaboration, GEANT4 – a simulation toolkit. Nucl. Instrum. Methods A 506, 250 (2003). doi:10.1016/S0168-9002(03)01368-8

Allison J, et al. GEANT4 developments and applications. IEEE Trans. Nucl. Sci. 2006;53:270. doi: 10.1109/TNS.2006.869826. DOI

M. Botje et al., The PDF4LHC working group interim recommendations (2011). arXiv:1101.0538

S. Alekhin et al., The PDF4LHC working group interim report (2011). arXiv:1101.0536

Particle Data Group Collaboration, Review of particle physics. J. Phys. G 37, 075021 (2010). doi:10.1088/0954-3899/37/7A/075021

CMS Collaboration, Measurements of inclusive W and Z cross sections in pp collisions at

Kidonakis N. Next-to-next-to-leading soft-gluon corrections for the top quark cross section and transverse momentum distribution. Phys. Rev. D. 2010;82:114030. doi: 10.1103/PhysRevD.82.114030. DOI

Campbell JM, Ellis RK, Williams C. Vector boson pair production at the LHC. JHEP. 2011;07:018. doi: 10.1007/JHEP07(2011)018. DOI

Read AL. Presentation of search results: the DOI

T. Junk, Confidence level computation for combining searches with small statistics. Nucl. Instrum. Methods A 434, 435 (1999). doi:10.1016/S0168-9002(99)00498-2. arXiv:hep-ex/9902006

L. Moneta, K. Cranmer, G. Schott, and W. Verkerke, The RooStats Project”, in Proceedings of the 13th International Workshop on Advanced Computing and Analysis Techniques in Physics Research (ACAT2010). SISSA (2010). arXiv:1009.1003

Lai H-L, et al. New parton distributions for collider physics. Phys. Rev. D. 2010;82:074024. doi: 10.1103/PhysRevD.82.074024. DOI

Martin A, Stirling W, Thorne R, Watt G. Parton distributions for the LHC. Eur. Phys. J. C. 2009;63:189. doi: 10.1140/epjc/s10052-009-1072-5. DOI

NNPDF Collaboration, A first unbiased global NLO determination of parton distributions and their uncertainties. Nucl. Phys. B 838, 136 (2010). doi:10.1016/j.nuclphysb.2010.05.008. arXiv:1002.4407

Fox PJ, Harnik R, Kopp J, Tsai Y. Missing energy signatures of dark matter at the LHC. Phys. Rev. D. 2012;85:056011. doi: 10.1103/PhysRevD.85.056011. DOI

An H, Ji X, Wang L-T. Light dark matter and DOI

Friedland A, Graesser ML, Shoemaker IM, Vecchi L. Probing nonstandard standard model backgrounds with LHC monojets. Phys. Lett. B. 2012;714:267. doi: 10.1016/j.physletb.2012.06.078. DOI

Buchmueller O, Dolan MJ, McCabe C. Beyond effective field theory for dark matter searches at the LHC. JHEP. 2014;01:025. doi: 10.1007/JHEP01(2014)025. DOI

Collaboration CoGeNT. Results from a search for light-mass dark matter with a PubMed DOI

SIMPLE Collaboration, Final analysis and results of the phase II simple dark matter search. Phys. Rev. Lett. 108, 201302 (2012). doi:10.1103/PhysRevLett.108.201302. arXiv:1106.3014 PubMed

COUPP Collaboration, First dark matter search results from a 4-kg CF

CDMS-II Collaboration, Dark matter search results from the CDMS II experiment. Science 327, 1619 (2010). doi:10.1126/science.1186112. arXiv:0912.3592 PubMed

CDMS Collaboration, Results from a Low-Energy Analysis of the CDMS II Germanium Data. Phys. Rev. Lett. 106, 131302 (2011). doi:10.1103/PhysRevLett.106.131302. arXiv:1011.2482 PubMed

SuperCDMS Collaboration, CDMSlite: a search for low-mass WIMPS using voltage-assisted calorimetric ionization detection in the superCDMS experiment Phys. Rev. Lett. 112, 041302 (2014). doi:10.1103/PhysRevLett.112.041302. arXiv:1309.3259 PubMed

XENON100 Collaboration, Dark matter results from 100 live days of XENON100 data. Phys. Rev. Lett. 107, 131302 (2011). doi:10.1103/PhysRevLett.107.131302. arXiv:1104.2549 PubMed

LUX Collaboration, First results from the LUX dark matter experiment at the Sanford Underground Research Facility. Phys. Rev. Lett. 112, 091303 (2014). doi:10.1103/PhysRevLett.112.091303. arXiv:1310.8214 PubMed

CDMS Collaboration, Silicon detector dark matter results from the final exposure of CDMS II. Phys. Rev. Lett. 111, 251301 (2013). doi:10.1103/PhysRevLett.111.251301. arXiv:1304.4279 PubMed

Super-Kamiokande Collaboration, An indirect search for WIMPs in the sun using 3109.6 days of upward-going muons in Super-Kamiokande. Astrophys. J. 742, 78 (2011). doi:10.1088/0004-637X/742/2/78. arXiv:1108.3384

Collaboration IceCube. Multi-year search for dark matter annihilations in the Sun with the AMANDA-II and IceCube detectors. Phys. Rev. D. 2012;85:042002. doi: 10.1103/PhysRevD.85.042002. DOI

Karg S, Krämer M, Li Q, Zeppenfeld D. NLO QCD corrections to graviton production at hadron colliders. Phys. Rev. D. 2010;81:094036. doi: 10.1103/PhysRevD.81.094036. DOI

DELPHI Collaboration, Photon events with missing energy in e

Kathrein S, Knapen S, Strassler MJ. Bounds from LEP on unparticle interactions with electroweak bosons. Phys. Rev. D. 2011;84:015010. doi: 10.1103/PhysRevD.84.015010. DOI

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...