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? and φ in Au + Au collisions at (sNN)1/2= 200 and 11.5 GeV from a multiphase transport model

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【作者】 叶永金陈金辉马余刚张松钟晨

【Author】 Y.J.Ye;J.H.Chen;Y.G.Ma;S.Zhang;C.Zhong;Shanghai Institute of Applied Physics, Chinese Academy of Sciences;University of Chinese Academy of Sciences;Shanghai Tech. University;

【机构】 Shanghai Institute of Applied Physics, Chinese Academy of SciencesUniversity of Chinese Academy of SciencesShanghai Tech. University

【摘要】 Within the framework of a multiphase transport model, we study the production and properties of ? andφ in Au + Au collisions with a new set of parameters for (sNN)1/2= 200 GeV and with the original set of parameters for (sNN)1/2= 11.5 GeV. The AMPT model with string melting provides a reasonable description at (sNN)1/2= 200 GeV,while the default AMPT model describes the data well at (sNN)1/2= 11.5 GeV. This indicates that the system created at top RHIC energy is dominated by partonic interactions, while hadronic interactions become important at lower beam energy, such as (sNN)1/2= 11.5 GeV. The comparison of N(?++?-)/[2N(φ)] ratio between data and calculations further supports the argument. Our calculations can generally describe the data of nuclear modification factor as well as elliptic flow.

【Abstract】 Within the framework of a multiphase transport model, we study the production and properties of ? andφ in Au + Au collisions with a new set of parameters for (sNN)1/2= 200 GeV and with the original set of parameters for (sNN)1/2= 11.5 GeV. The AMPT model with string melting provides a reasonable description at (sNN)1/2= 200 GeV,while the default AMPT model describes the data well at (sNN)1/2= 11.5 GeV. This indicates that the system created at top RHIC energy is dominated by partonic interactions, while hadronic interactions become important at lower beam energy, such as (sNN)1/2= 11.5 GeV. The comparison of N(?++?-)/[2N(φ)] ratio between data and calculations further supports the argument. Our calculations can generally describe the data of nuclear modification factor as well as elliptic flow.

【关键词】 multi-strangeness particlesAMPTRHIC
【Key words】 multi-strangeness particlesAMPTRHIC
【基金】 Supported by National Natural Science Foundation of China(11421505,11520101004,11220101005,11275250,11322547);Major State Basic Research Development Program in China(2014CB845400,2015CB856904);Key Research Program of Frontier Sciences of CAS(QYZDJSSW-SLH002)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2017年08期
  • 【分类号】O572.2
  • 【下载频次】14
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