Centrality and energy dependence of rapidity correlation patterns in relativistic heavy ion collisions

The centrality and energy dependence of rapidity correlation patterns are studied in Au+Au collisions by using AMPT with string melting, RQMD and UrQMD models. The behaviors of the shortrange correlation (SRC) and the long-range correlation (LRC) are presented clearly by two spatial-position depende...

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Published inChinese physics C Vol. 35; no. 3; pp. 259 - 263
Main Authors Le, Tian (天乐), Xu, Ming-Mei (明梅 许), Wu, Yuan-Fang (元芳 吴)
Format Journal Article
LanguageEnglish
Published IOP Publishing 01.03.2011
Institute of Particle Physics,Huazhong Normal University,Wuhan 430079,China%Institute of Particle Physics,Huazhong Normal University,Wuhan 430079,China
Key Lab of Quark and Lepton Physics(Huazhong Normal University),Ministry of Education,Wuhan 430079,China
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ISSN1674-1137
2058-6132
DOI10.1088/1674-1137/35/3/009

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Abstract The centrality and energy dependence of rapidity correlation patterns are studied in Au+Au collisions by using AMPT with string melting, RQMD and UrQMD models. The behaviors of the shortrange correlation (SRC) and the long-range correlation (LRC) are presented clearly by two spatial-position dependent correlation patterns. For centrality dependence, UrQMD and RQMD give similar results as those in AMPT, i.e., in most central collisions, the correlation structure is flatter and the correlation range is larger, which indicates a long range rapidity correlation. A long range rapidity correlation showing up in RQMD and UrQMD implies that parton interaction is not the only source of long range rapidity correlations. For energy dependence, AMPT with string melting and RQMD show quite different results. The correlation patterns in RQMD at low collision energies and those in AMPT at high collision energies have similar structures, i.e. a convex curve, while the correlation patterns in RQMD at high collision energies and those in AMPT at low collision energies show flat structures, having no position dependence. Long range rapidity correlation presents itself at high energy and disappears at low energy in RQMD, which also indicates that long range rapidity correlations may come from some trivial effects, rather than the parton interactions.
AbstractList O4; The centrality and energy dependence of rapidity correlation patterns are studied in Au+Au collisions by using AMPT with string melting,RQMD and UrQMD models.The behaviors of the shortrange correlation(SRC)and the long-range correlation(LRC)are presented clearly by two spatial-position dependent correlation patterns.For centrality dependence.UrQMD and RQMD give similar results as those in AMPT,i.,e., in most central collisions,the correlation structure is flatter and the correlation range is larger,which indicates a long range rapidity correlation.A long range rapidity correlation showing up in RQMD and UrQMD implies that patton interaction is not the only source of long range rapidity correlations.For energy dependence,AMPT with string melting and RQMD show quite different results.The correlation patterns in RQMD at low collision energies and those in AMPT at high collision energies have similar structures,i.e.aconvex curve.while the correlation patterns in RQMD at high collision energies and those in AMPT at low collision energies show fiat structures,having no position dependence.Long range rapidity correlation presents itself at high energy and disappears at low energy in RQMD,which also indicates that long range rapidity correlations may come from some trivial effects,rather than the parton interactions.
The centrality and energy dependence of rapidity correlation patterns are studied in Au+Au collisions by using AMPT with string melting, RQMD and UrQMD models. The behaviors of the shortrange correlation (SRC) and the long-range correlation (LRC) are presented clearly by two spatial-position dependent correlation patterns. For centrality dependence, UrQMD and RQMD give similar results as those in AMPT, i.e., in most central collisions, the correlation structure is flatter and the correlation range is larger, which indicates a long range rapidity correlation. A long range rapidity correlation showing up in RQMD and UrQMD implies that parton interaction is not the only source of long range rapidity correlations. For energy dependence, AMPT with string melting and RQMD show quite different results. The correlation patterns in RQMD at low collision energies and those in AMPT at high collision energies have similar structures, i.e. a convex curve, while the correlation patterns in RQMD at high collision energies and those in AMPT at low collision energies show flat structures, having no position dependence. Long range rapidity correlation presents itself at high energy and disappears at low energy in RQMD, which also indicates that long range rapidity correlations may come from some trivial effects, rather than the parton interactions.
Author Le, Tian (天乐)
Wu, Yuan-Fang (元芳 吴)
Xu, Ming-Mei (明梅 许)
AuthorAffiliation Institute of Particle Physics,Huazhong Normal University,Wuhan 430079,China%Institute of Particle Physics,Huazhong Normal University,Wuhan 430079,China;Key Lab of Quark and Lepton Physics(Huazhong Normal University),Ministry of Education,Wuhan 430079,China
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Cites_doi 10.1016/0370-1573(87)90110-4
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long-range correlation
correlation patterns
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Institute of Particle Physics,Huazhong Normal University,Wuhan 430079,China%Institute of Particle Physics,Huazhong Normal University,Wuhan 430079,China
Key Lab of Quark and Lepton Physics(Huazhong Normal University),Ministry of Education,Wuhan 430079,China
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Snippet The centrality and energy dependence of rapidity correlation patterns are studied in Au+Au collisions by using AMPT with string melting, RQMD and UrQMD models....
O4; The centrality and energy dependence of rapidity correlation patterns are studied in Au+Au collisions by using AMPT with string melting,RQMD and UrQMD...
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SubjectTerms Collisions
Correlation
Correlation analysis
Energy use
Low energy
Melting
Partons
Strings
Title Centrality and energy dependence of rapidity correlation patterns in relativistic heavy ion collisions
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