Multiplicity and transverse momentum evolution of charge-dependent correlations in pp, p-Pb, and Pb-Pb collisions at the LHC

. 2016 ; 76 (2) : 86. [epub] 20160219

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

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid27069415

We report on two-particle charge-dependent correlations in pp, p-Pb, and Pb-Pb collisions as a function of the pseudorapidity and azimuthal angle difference, [Formula: see text] and [Formula: see text] respectively. These correlations are studied using the balance function that probes the charge creation time and the development of collectivity in the produced system. The dependence of the balance function on the event multiplicity as well as on the trigger and associated particle transverse momentum ([Formula: see text]) in pp, p-Pb, and Pb-Pb collisions at [Formula: see text] 7, 5.02, and 2.76 TeV, respectively, are presented. In the low transverse momentum region, for [Formula: see text] GeV/c, the balance function becomes narrower in both [Formula: see text] and [Formula: see text] directions in all three systems for events with higher multiplicity. The experimental findings favor models that either incorporate some collective behavior (e.g. AMPT) or different mechanisms that lead to effects that resemble collective behavior (e.g. PYTHIA8 with color reconnection). For higher values of transverse momenta the balance function becomes even narrower but exhibits no multiplicity dependence, indicating that the observed narrowing with increasing multiplicity at low [Formula: see text] is a feature of bulk particle production.

5 Fock Institute for Physics St Petersburg State University St Petersburg Russia

A 1 Alikhanyan National Science Laboratory Foundation Yerevan Armenia

Benemérita Universidad Autónoma de Puebla Puebla Mexico

Benemérita Universidad Autónoma de Puebla Puebla Mexico ; Centro de Investigación y de Estudios Avanzados Mexico City and Mérida Mexico

Bogolyubov Institute for Theoretical Physics Kiev Ukraine

Bogolyubov Institute for Theoretical Physics Kiev Ukraine ; European Organization for Nuclear Research Geneva Switzerland

Budker Institute for Nuclear Physics Novosibirsk Russia

California Polytechnic State University San Luis Obispo California USA

Central China Normal University Wuhan China

Central China Normal University Wuhan China ; Laboratoire de Physique Corpusculaire Clermont Université Université Blaise Pascal CNRS IN2P3 Clermont Ferrand France

Central China Normal University Wuhan China ; SUBATECH Ecole des Mines de Nantes Université de Nantes CNRS IN2P3 Nantes France

Centre de Calcul de l'IN2P3 Villeurbanne France

Centro de Aplicaciones Tecnológicas y Desarrollo Nuclear Havana Cuba

Centro de Aplicaciones Tecnológicas y Desarrollo Nuclear Havana Cuba ; Dipartimento di Fisica dell'Università and Sezione INFN Turin Italy

Centro de Investigación y de Estudios Avanzados Mexico City and Mérida Mexico

Centro de Investigaciones Energéticas Medioambientales y Tecnológicas Madrid Spain

Centro de Investigaciones Energéticas Medioambientales y Tecnológicas Madrid Spain ; Instituto de Física Universidad Nacional Autónoma de México Mexico City Mexico

Centro Fermi Museo Storico della Fisica e Centro Studi e Ricerche Enrico Fermi Rome Italy

Centro Fermi Museo Storico della Fisica e Centro Studi e Ricerche Enrico Fermi Rome Italy ; Dipartimento di Fisica 'E R Caianiello' dell'Università and Gruppo Collegato INFN Salerno Italy

Centro Fermi Museo Storico della Fisica e Centro Studi e Ricerche Enrico Fermi Rome Italy ; Dipartimento di Fisica e Astronomia dell'Università and Sezione INFN Bologna Italy

Centro Fermi Museo Storico della Fisica e Centro Studi e Ricerche Enrico Fermi Rome Italy ; Sezione INFN Bologna Italy

Chicago State University Chicago IL USA

China Institute of Atomic Energy Beijing China

Commissariat à l'Energie Atomique IRFU Saclay France

Commissariat à l'Energie Atomique IRFU Saclay France ; Laboratoire de Physique Corpusculaire Clermont Université Université Blaise Pascal CNRS IN2P3 Clermont Ferrand France

COMSATS Institute of Information Technology Islamabad Pakistan

Departamento de Física de Partículas and IGFAE Universidad de Santiago de Compostela Santiago de Compostela Spain

Department of Physics Aligarh Muslim University Aligarh India

Department of Physics and Centre for Astroparticle Physics and Space Science Bose Institute Kolkata India

Department of Physics and Technology University of Bergen Mons Norway

Department of Physics Gauhati University Guwahati India

Department of Physics Ohio State University Columbus OH USA

Department of Physics Sejong University Seoul South Korea

Department of Physics University of Oslo Oslo Norway

Dipartimento di Elettrotecnica ed Elettronica del Politecnico Bari Italy ; Sezione INFN Bari Italy

Dipartimento di Fisica 'E R Caianiello' dell'Università and Gruppo Collegato INFN Salerno Italy

Dipartimento di Fisica dell'Università 'La Sapienza' and Sezione INFN Rome Italy

Dipartimento di Fisica dell'Università and Sezione INFN Cagliari Italy

Dipartimento di Fisica dell'Università and Sezione INFN Cagliari Italy ; Lawrence Berkeley National Laboratory Berkeley California USA

Dipartimento di Fisica dell'Università and Sezione INFN Trieste Italy

Dipartimento di Fisica dell'Università and Sezione INFN Turin Italy

Dipartimento di Fisica dell'Università and Sezione INFN Turin Italy ; European Organization for Nuclear Research Geneva Switzerland

Dipartimento di Fisica dell'Università and Sezione INFN Turin Italy ; iThemba LABS National Research Foundation Somerset West South Africa ; University of the Witwatersrand Johannesburg South Africa

Dipartimento di Fisica e Astronomia dell'Università and Sezione INFN Bologna Italy

Dipartimento di Fisica e Astronomia dell'Università and Sezione INFN Catania Italy

Dipartimento di Fisica e Astronomia dell'Università and Sezione INFN Padua Italy

Dipartimento di Fisica e Astronomia dell'Università and Sezione INFN Padua Italy ; European Organization for Nuclear Research Geneva Switzerland

Dipartimento di Scienze e Innovazione Tecnologica dell'Università del Piemonte Orientale and Gruppo Collegato INFN Alessandria Italy

Dipartimento Interateneo di Fisica 'M Merlin' and Sezione INFN Bari Italy

Dipartimento Interateneo di Fisica 'M Merlin' and Sezione INFN Bari Italy ; European Organization for Nuclear Research Geneva Switzerland ; Institute of Experimental Physics Slovak Academy of Sciences Kosice Slovakia

Division of Experimental High Energy Physics University of Lund Lund Sweden

Division of Experimental High Energy Physics University of Lund Lund Sweden ; Oak Ridge National Laboratory Oak Ridge TN USA

Eberhard Karls Universität Tübingen Tübingen Germany

European Organization for Nuclear Research Bucharest Romania

European Organization for Nuclear Research Geneva Switzerland

European Organization for Nuclear Research Geneva Switzerland ; Institut für Kernphysik Westfälische Wilhelms Universität Münster Münster Germany

European Organization for Nuclear Research Geneva Switzerland ; Laboratori Nazionali di Frascati INFN Frascati Italy

European Organization for Nuclear Research Geneva Switzerland ; Physics Department University of Athens Athens Greece

European Organization for Nuclear Research Geneva Switzerland ; Physikalisches Institut Ruprecht Karls Universität Heidelberg Heidelberg Germany

European Organization for Nuclear Research Geneva Switzerland ; Research Division and ExtreMe Matter Institute EMMI GSI Helmholtzzentrum für Schwerionenforschung Darmstadt Germany

European Organization for Nuclear Research Geneva Switzerland ; Sezione INFN Bari Italy

European Organization for Nuclear Research Geneva Switzerland ; Sezione INFN Bologna Italy

European Organization for Nuclear Research Geneva Switzerland ; SUBATECH Ecole des Mines de Nantes Université de Nantes CNRS IN2P3 Nantes France

European Organization for Nuclear Research Vienna Austria

Excellence Cluster Universe Technische Universität München Munich Germany ; Physik Department Technische Universität München Munich Germany

Faculty of Engineering Bergen University College Mons Norway

Faculty of Mathematics Physics and Informatics Comenius University Bratislava Slovakia

Faculty of Nuclear Sciences and Physical Engineering Czech Technical University Prague Prague Czech Republic

Faculty of Science P J Šafárik University Kosice Slovakia

Faculty of Technology Buskerud and Vestfold University College Vestfold Norway

Frankfurt Institute for Advanced Studies Johann Wolfgang Goethe Universität Frankfurt Frankfurt Germany

Frankfurt Institute for Advanced Studies Johann Wolfgang Goethe Universität Frankfurt Frankfurt Germany ; Research Division and ExtreMe Matter Institute EMMI GSI Helmholtzzentrum für Schwerionenforschung Darmstadt Germany

Gangneung Wonju National University Gangneung South Korea

Gangneung Wonju National University Gangneung South Korea ; Konkuk University Seoul South Korea

Helsinki Institute of Physics Helsinki Finland

Hiroshima University Hiroshima Japan

Indian Institute of Technology Bombay Mumbai India

Indian Institute of Technology Indore Indore India

Inha University Incheon South Korea

Institut de Physique Nucléaire d'Orsay Université Paris Sud CNRS IN2P3 Orsay France

Institut de Physique Nucléaire d'Orsay Université Paris Sud CNRS IN2P3 Orsay France ; Saha Institute of Nuclear Physics Kolkata India

Institut für Informatik Johann Wolfgang Goethe Universität Frankfurt Frankfurt Germany

Institut für Kernphysik Johann Wolfgang Goethe Universität Frankfurt Frankfurt Germany

Institut für Kernphysik Westfälische Wilhelms Universität Münster Münster Germany

Institut für Kernphysik Westfälische Wilhelms Universität Münster Münster Germany ; SUBATECH Ecole des Mines de Nantes Université de Nantes CNRS IN2P3 Nantes France

Institut Pluridisciplinaire Hubert Curien Université de Strasbourg CNRS IN2P3 Strasbourg France

Institut Pluridisciplinaire Hubert Curien Université de Strasbourg CNRS IN2P3 Strasbourg France ; SUBATECH Ecole des Mines de Nantes Université de Nantes CNRS IN2P3 Nantes France

Institute for Nuclear Research Academy of Sciences Moscow Russia

Institute for Subatomic Physics of Utrecht University Utrecht The Netherlands

Institute for Subatomic Physics of Utrecht University Utrecht The Netherlands ; Nikhef Nationaal instituut voor subatomaire fysica Amsterdam The Netherlands

Institute for Subatomic Physics of Utrecht University Utrecht The Netherlands ; Wayne State University Detroit MI USA

Institute for Theoretical and Experimental Physics Moscow Russia

Institute for Theoretical and Experimental Physics Moscow Russia ; Joint Institute for Nuclear Research Dubna Russia

Institute of Experimental Physics Slovak Academy of Sciences Kosice Slovakia

Institute of Experimental Physics Slovak Academy of Sciences Kosice Slovakia ; School of Physics and Astronomy University of Birmingham Birmingham UK

Institute of Experimental Physics Slovak Academy of Sciences Kosice Slovakia ; Technical University of Košice Košice Slovakia

Institute of Physics Academy of Sciences of the Czech Republic Prague Czech Republic

Institute of Physics Bhubaneswar India

Institute of Space Science Bucharest Romania

Instituto de Ciencias Nucleares Universidad Nacional Autónoma de México Mexico City Mexico

Instituto de Física Universidad Nacional Autónoma de México Mexico City Mexico

iThemba LABS National Research Foundation Somerset West South Africa

Joint Institute for Nuclear Research Dubna Russia

Konkuk University Seoul South Korea

Korea Institute of Science and Technology Information Daejeon South Korea

KTO Karatay University Konya Turkey

Laboratoire de Physique Corpusculaire Clermont Université Université Blaise Pascal CNRS IN2P3 Clermont Ferrand France

Laboratoire de Physique Subatomique et de Cosmologie Université Grenoble Alpes CNRS IN2P3 Grenoble France

Laboratori Nazionali di Frascati INFN Frascati Italy

Laboratori Nazionali di Legnaro INFN Legnaro Italy

Lawrence Berkeley National Laboratory Berkeley California USA

Lawrence Berkeley National Laboratory Berkeley California USA ; Physikalisches Institut Ruprecht Karls Universität Heidelberg Heidelberg Germany

Moscow Engineering Physics Institute Moscow Russia

Moscow Engineering Physics Institute Moscow Russia ; Russian Research Centre Kurchatov Institute Moscow Russia

Nagasaki Institute of Applied Science Nagasaki Japan ; Physikalisches Institut Ruprecht Karls Universität Heidelberg Heidelberg Germany

National Centre for Nuclear Studies Warsaw Poland

National Institute for Physics and Nuclear Engineering Bucharest Romania

National Institute of Science Education and Research Bhubaneswar India

National Institute of Science Education and Research Bhubaneswar India ; Universidade Estadual de Campinas Campinas Brazil

National Institute of Science Education and Research Bhubaneswar India ; Variable Energy Cyclotron Centre Kolkata India

Niels Bohr Institute University of Copenhagen Copenhagen Denmark

Nikhef Nationaal instituut voor subatomaire fysica Amsterdam The Netherlands

Nuclear Physics Group STFC Daresbury Laboratory Daresbury UK

Nuclear Physics Group STFC Daresbury Laboratory Daresbury UK ; University of Liverpool Liverpool UK

Nuclear Physics Institute Academy of Sciences of the Czech Republic Řež u Prahy Czech Republic

Oak Ridge National Laboratory Oak Ridge TN USA

Oak Ridge National Laboratory Oak Ridge TN USA ; Physics Department Creighton University Omaha NE USA

Oak Ridge National Laboratory Oak Ridge TN USA ; University of Tennessee Knoxville TN USA

Petersburg Nuclear Physics Institute Gatchina Russia

Physics Department Creighton University Omaha NE USA

Physics Department Panjab University Chandigarh India

Physics Department The University of Texas at Austin Austin TX USA

Physics Department University of Athens Athens Greece

Physics Department University of Cape Town Cape Town South Africa

Physics Department University of Jammu Jammu India

Physics Department University of Rajasthan Jaipur India

Physikalisches Institut Ruprecht Karls Universität Heidelberg Heidelberg Germany

Physikalisches Institut Ruprecht Karls Universität Heidelberg Heidelberg Germany ; Research Division and ExtreMe Matter Institute EMMI GSI Helmholtzzentrum für Schwerionenforschung Darmstadt Germany

Physikalisches Institut Ruprecht Karls Universität Heidelberg Heidelberg Germany ; University of Tsukuba Tsukuba Japan

Purdue University West Lafayette IN USA

Pusan National University Pusan South Korea

Research Division and ExtreMe Matter Institute EMMI GSI Helmholtzzentrum für Schwerionenforschung Darmstadt Germany

Rudjer Bošković Institute Zagreb Croatia

Russian Federal Nuclear Center Sarov Russia

Russian Research Centre Kurchatov Institute Moscow Russia

Saha Institute of Nuclear Physics Kolkata India

School of Physics and Astronomy University of Birmingham Birmingham UK

Sección Física Departamento de Ciencias Pontificia Universidad Católica del Perú Lima Peru

Sezione INFN Bari Italy

Sezione INFN Bologna Italy

Sezione INFN Cagliari Italy

Sezione INFN Catania Italy

Sezione INFN Padua Italy

Sezione INFN Rome Italy

Sezione INFN Trieste Italy

Sezione INFN Turin Italy

SSC IHEP of NRC Kurchatov institute Protvino Russia

SUBATECH Ecole des Mines de Nantes Université de Nantes CNRS IN2P3 Nantes France

Suranaree University of Technology Nakhon Ratchasima Thailand

Technical University of Košice Košice Slovakia

Technical University of Split FESB Split Croatia

The Henryk Niewodniczanski Institute of Nuclear Physics Polish Academy of Sciences Cracow Poland

Universidad Autónoma de Sinaloa Culiacán Mexico

Universidade de São Paulo São Paulo Brazil

Universidade de São Paulo São Paulo Brazil ; University of Liverpool Liverpool UK

Universidade Estadual de Campinas Campinas Brazil

Université de Lyon Université Lyon 1 CNRS IN2P3 IPN Lyon Villeurbanne France

University of Houston Houston TX USA

University of Jyväskylä Jyväskylä Finland

University of Liverpool Liverpool UK

University of Tennessee Knoxville TN USA

University of the Witwatersrand Johannesburg South Africa

University of Tokyo Tokyo Japan

University of Tsukuba Tsukuba Japan

University of Zagreb Zagreb Croatia

Variable Energy Cyclotron Centre Kolkata India

Warsaw University of Technology Warsaw Poland

Wayne State University Detroit MI USA

Wigner Research Centre for Physics Hungarian Academy of Sciences Budapest Hungary

Yale University New Haven CT USA

Yonsei University Seoul South Korea

Zentrum für Technologietransfer und Telekommunikation Fachhochschule Worms Worms Germany

Zobrazit více v PubMed

NA49 Collaboration, C. Alt et al., System size and centrality dependence of the balance function in A + A collisions at

NA49 Collaboration, C. Alt et al., Rapidity and energy dependence of the electric charge correlations in A + A collisions at the SPS energies. Phys. Rev. C 76, 024914 (2007). arXiv:0705.1122 [nucl-ex]

STAR Collaboration, C. Adler et al., Disappearance of back-to-back high PubMed

STAR Collaboration, J. Adams et al., Distributions of charged hadrons associated with high transverse momentum particles in pp and Au + Au collisions at PubMed

PHENIX Collaboration, A. Adare et al., System size and energy dependence of jet-induced hadron pair correlation shapes in Cu+Cu and Au+Au collisions at PubMed

STAR Collaboration, J. Adams et al., Direct observation of dijets in central Au+Au collisions at PubMed

PHOBOS Collaboration, B. Alver et al., System size dependence of cluster properties from two-particle angular correlations in Cu+Cu and Au+Au collisions at

PHENIX Collaboration, A. Adare et al., Dihadron azimuthal correlations in Au+Au collisions at

STAR Collaboration, B.I. Abelev et al., Long range rapidity correlations and jet production in high energy nuclear collisions. Phys. Rev. C 80, 064912 (2009). arXiv:0909.0191 [nucl-ex]

PHOBOS Collaboration, B. Alver et al., High transverse momentum triggered correlations over a large pseudorapidity acceptance in Au+Au collisions at PubMed

PHENIX Collaboration, A. Adare et al., Trends in yield and azimuthal shape modification in dihadron correlations in relativistic heavy ion collisions. Phys. Rev. Lett. 104, 252301 (2010). arXiv:1002.1077 [nucl-ex] PubMed

ALICE Collaboration, K. Aamodt et al., Harmonic decomposition of two-particle angular correlations in Pb–Pb collisions at

ALICE Collaboration, K. Aamodt et al., Particle-yield modification in jet-like azimuthal di-hadron correlations in Pb–Pb collisions at PubMed

CMS Collaboration, S. Chatrchyan et al., Long-range and short-range dihadron angular correlations in central PbPb collisions at a nucleon–nucleon center of mass energy of 2.76 TeV. JHEP 07, 076 (2011). arXiv:1105.2438 [nucl-ex]

CMS Collaboration, S. Chatrchyan et al., Centrality dependence of dihadron correlations and azimuthal anisotropy harmonics in PbPb collisions at

ATLAS Collaboration, G. Aad et al., Measurement of the azimuthal anisotropy for charged particle production in

N. Armesto, C.A. Salgado, U.A. Wiedemann, Measuring the collective flow with jets. Phys. Rev. Lett. 93, 242301 (2004). arXiv:hep-ph/0405301 PubMed

A. Majumder, B. Muller, S.A. Bass, Longitudinal broadening of quenched jets in turbulent color fields. Phys. Rev. Lett. 99, 042301 (2007). arXiv:hep-ph/0611135 PubMed

C.B. Chiu, R.C. Hwa, Pedestal and peak structure in jet correlation. Phys. Rev. C 72, 034903 (2005). arXiv:nucl-th/0505014

Wong C-Y. The momentum kick model description of the near-side ridge and jet quenching. Phys. Rev. C. 2008;78:064905. doi: 10.1103/PhysRevC.78.064905. DOI

Dumitru A, Gelis F, McLerran L, Venugopalan R. Glasma flux tubes and the near side ridge phenomenon at RHIC. Nucl. Phys. A. 2008;810:91–108. doi: 10.1016/j.nuclphysa.2008.06.012. DOI

S. Gavin, L. McLerran, G. Moschelli, Long range correlations and the soft ridge in relativistic nuclear collisions. Phys. Rev. C 79, 051902 (2009). arXiv:0806.4718 [nucl-th]

K. Dusling, D. Fernandez-Fraile, R. Venugopalan, Three-particle correlation from glasma flux tubes. Nucl. Phys. A 828, 161–177 (2009). arXiv:0902.4435 [nucl-th]

P. Romatschke, Momentum broadening in an anisotropic plasma. Phys. Rev. C 75, 014901 (2007). arXiv:hep-ph/0607327

E.V. Shuryak, On the origin of the ’Ridge’ phenomenon induced by jets in heavy ion collisions. Phys. Rev. C 76, 047901 (2007). arXiv:0706.3531 [nucl-th]

S.A. Voloshin, Two particle rapidity, transverse momentum, and azimuthal correlations in relativistic nuclear collisions and transverse radial expansion. Nucl. Phys. A 749, 287–290 (2005). arXiv:nucl-th/0410024

J. Takahashi, B.M. Tavares, W.L. Qian, R. Andrade, F. Grassi, Y. Hama, T. Kodama, N. Xu, Topology studies of hydrodynamics using two particle correlation analysis. Phys. Rev. Lett. 103, 242301 (2009). arXiv:0902.4870 [nucl-th] PubMed

B. Alver, G. Roland, Collision geometry fluctuations and triangular flow in heavy-ion collisions. Phys. Rev. C 81, 054905 (2010). arXiv:1003.0194 [nucl-th]. [Erratum: Phys. Rev. C 82, 039903 (2010)]

B.H. Alver, C. Gombeaud, M. Luzum, J.-Y. Ollitrault, Triangular flow in hydrodynamics and transport theory. Phys. Rev. C 82, 034913 (2010). arXiv:1007.5469 [nucl-th]

Hama Y, Andrade RPG, Grassi F, Qian W-L. Trying to understand the ridge effect in hydrodynamic model. Nonlinear Phenom. Complex Syst. 2009;12:466–470.

P. Bozek, W. Broniowski, Charge conservation and the shape of the ridge of two-particle correlations in relativistic heavy-ion collisions. Phys. Rev. Lett. 109, 062301 (2012). arXiv:1204.3580 [nucl-th] PubMed

CMS Collaboration, V. Khachatryan et al., Observation of long-range near-side angular correlations in proton–proton collisions at the LHC. JHEP 09, 091 (2010). arXiv:1009.4122 [hep-ex]

CMS Collaboration, S. Chatrchyan et al., Observation of long-range near-side angular correlations in proton-lead collisions at the LHC. Phys. Lett. B 718, 795–814 (2013). arXiv:1210.5482 [nucl-ex]

ALICE Collaboration, B. Abelev et al., Long-range angular correlations on the near and away side in

ATLAS Collaboration, G. Aad et al., Observation of associated near-side and away-side long-range correlations in PubMed

CMS Collaboration, S. Chatrchyan et al., Multiplicity and transverse momentum dependence of two- and four-particle correlations in pPb and PbPb collisions. Phys. Lett. B 724, 213–240 (2013). arXiv:1305.0609 [nucl-ex]

ATLAS Collaboration, G. Aad et al., Measurement with the ATLAS detector of multi-particle azimuthal correlations in p+Pb collisions at

ALICE Collaboration, B.B. Abelev et al., Multiparticle azimuthal correlations in p–Pb and Pb–Pb collisions at the CERN large hadron collider. Phys. Rev. C 90(5), 054901 (2014). arXiv:1406.2474 [nucl-ex]

Bozek P. Elliptic flow in proton–proton collisions at DOI

P. Bozek, W. Broniowski, Correlations from hydrodynamic flow in p–Pb collisions. Phys. Lett. B 718, 1557–1561 (2013). arXiv:1211.0845 [nucl-th]

P. Bozek, W. Broniowski, Collective dynamics in high-energy proton-nucleus collisions. Phys. Rev. C 88(1), 014903 (2013). arXiv:1304.3044 [nucl-th]

Dumitru A, Dusling K, Gelis F, Jalilian-Marian J, Lappi T, Venugopalan R. The ridge in proton–proton collisions at the LHC. Phys. Lett. B. 2011;697:21–25. doi: 10.1016/j.physletb.2011.01.024. DOI

Dusling K, Venugopalan R. Comparison of the color glass condensate to dihadron correlations in proton–proton and proton-nucleus collisions. Phys. Rev. D. 2013;87(9):094034. doi: 10.1103/PhysRevD.87.094034. DOI

Dusling K, Venugopalan R. Explanation of systematics of CMS p+Pb high multiplicity di-hadron data at DOI

ALICE Collaboration, B.B. Abelev et al., Long-range angular correlations of

ALICE Collaboration, B.B. Abelev et al., Elliptic flow of identified hadrons in Pb–Pb collisions at

P. Bozek, W. Broniowski, G. Torrieri, Mass hierarchy in identified particle distributions in proton–lead collisions. Phys. Rev. Lett. 111, 172303 (2013). arXiv:1307.5060 [nucl-th] PubMed

K. Werner, M. Bleicher, B. Guiot, I. Karpenko, T. Pierog, Evidence for flow from hydrodynamic simulations of PubMed

P. Romatschke, Collective flow without hydrodynamics: simulation results for relativistic ion collisions. Eur. Phys. J. C 75(9), 429 (2015). arXiv:1504.02529 [nucl-th]

CMS Collaboration, V. Khachatryan et al., Evidence for collective multiparticle correlations in p–Pb collisions. Phys. Rev. Lett. 115(1), 012301 (2015). arXiv:1502.05382 [nucl-ex] PubMed

S.A. Bass, P. Danielewicz, S. Pratt, Clocking hadronization in relativistic heavy ion collisions with balance functions. Phys. Rev. Lett. 85, 2689–2692 (2000). arXiv:nucl-th/0005044 PubMed

S. Jeon, S. Pratt, Balance functions, correlations, charge fluctuations and interferometry. Phys. Rev. C 65, 044902 (2002). arXiv:hep-ph/0110043

P. Bozek, The balance functions in azimuthal angle is a measure of the transverse flow. Phys. Lett. B 609, 247–251 (2005). arXiv:nucl-th/0412076

ALICE Collaboration, B. Abelev et al., Charge correlations using the balance function in Pb–Pb collisions at

ALICE Collaboration, P. Cortese et al., ALICE: Physics performance report, volume I. J. Phys. G 30, 1517–1763 (2004)

ALICE Collaboration, P. Cortese et al., ALICE: Physics performance report, volume II. J. Phys. G 32, 1295–2040 (2006)

ALICE Collaboration, K. Aamodt et al., The ALICE experiment at the CERN LHC. JINST 3, S08002 (2008)

ALICE Collaboration, K. Aamodt et al., Charged-particle multiplicity density at mid-rapidity in central Pb–Pb collisions at PubMed

ALICE Collaboration, K. Aamodt et al., Centrality dependence of the charged-particle multiplicity density at mid-rapidity in Pb–Pb collisions at PubMed

ALICE Collaboration, B.B. Abelev et al., Performance of the ALICE experiment at the CERN LHC. Int. J. Mod. Phys. A 29, 1430044 (2014). arXiv:1402.4476 [nucl-ex]

J. Alme et al., The ALICE TPC, a large 3-dimensional tracking device with fast readout for ultra-high multiplicity events. Nucl. Instrum. Methods A 622, 316–367 (2010). arXiv:1001.1950 [physics.ins-det]

ALICE Collaboration, E. Abbas et al., Performance of the ALICE VZERO system. JINST 8, P10016 (2013). arXiv:1306.3130 [nucl-ex]

ALICE Collaboration, B.B. Abelev et al., Multiplicity dependence of the average transverse momentum in pp, p–Pb, and Pb–Pb collisions at the LHC. Phys. Lett. B 727, 371–380 (2013). arXiv:1307.1094 [nucl-ex]

ALICE Collaboration, J. Adam et al., Centrality dependence of particle production in p–Pb collisions at PubMed PMC

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

J. Ranft, DPMJET version II.5: sampling of hadron hadron, hadron–nucleus and nucleus–nucleus interactions at accelerator and cosmic ray energies according to the two component dual parton model: code manual. arXiv:hep-ph/9911232 [hep-ph]

Wang X-N, Gyulassy M. HIJING: a Monte Carlo model for multiple jet production in p p, p A and A A collisions. Phys. Rev. D. 1991;44:3501–3516. doi: 10.1103/PhysRevD.44.3501. PubMed DOI

R. Brun, F. Carminati, S. Giani, GEANT detector description and simulation tool, GEANT3 User Guide, CERN Data 748 Handling Division DD/EE/841 (1985)

ALICE Collaboration, K. Aamodt et al., Midrapidity antiproton-to-proton ratio in pp collisions at PubMed

ALICE Collaboration, B.B. Abelev et al., Multiplicity dependence of pion, kaon, proton and lambda production in p–Pb collisions at

D. Politis, J. Romano, Large-sample confidence regions based onsubsamples underminimal assumptions.Ann. Stat. 22(4), 2031–2050 (1994)

K.M. Wolter, Introduction to variance estimation (Springer, New York, 1985)

ALICE Collaboration, B. Abelev et al., Net-charge fluctuations in Pb–Pb collisions at PubMed

ALICE Collaboration, K. Aamodt et al., Femtoscopy of

ALICE Collaboration, J. Adam et al., Two-pion femtoscopy in p–Pb collisions at

ALICE Collaboration, J. Adam et al., Centrality dependence of pion freeze-out radii in Pb–Pb collisions at PubMed

ALICE Collaboration, B.B. Abelev et al., Freeze-out radii extracted from three-pion cumulants in pp, p–Pb and Pb–Pb collisions at the LHC, Phys. Lett. B 739, 139–151 (2014). arXiv:1404.1194 [nucl-ex]

B. Zhang, C.M. Ko, B.-A. Li, Z.-W. Lin, A multiphase transport model for nuclear collisions at RHIC. Phys. Rev. C 61, 067901 (2000). arXiv:nucl-th/9907017

Z.-W. Lin, C.M. Ko, B.-A. Li, B. Zhang, S. Pal, A multi-phase transport model for relativistic heavy ion collisions. Phys. Rev. C 72, 064901 (2005). arXiv:nucl-th/0411110

J. Xu, C.M. Ko, Pb–Pb collisions at

J. Xu, C.M. Ko, Higher-order anisotropic flows and dihadron correlations in Pb–Pb collisions at

Buckley A, et al. General-purpose event generators for LHC physics. Phys. Rep. 2011;504:145–233. doi: 10.1016/j.physrep.2011.03.005. DOI

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...