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Omega and phi production in Au plus Au collisions at root s(NN),=11.5 and 7.7 GeV in a dynamical quark coalescence model
Jin, XH; Chen, JH; Ma, YG; Zhang, S; Zhang, CJ; Zhong, C
2018
Source PublicationNUCLEAR SCIENCE AND TECHNIQUES
ISSN1001-8042
Volume29Issue:4Pages:-
Subtype期刊论文
AbstractThe Omega and phi production in relativistic heavy-ion collisions is studied in a dynamical quark coalescence model using the phase space information of strange quarks from a multiphase transport (AMPT) model. Enhanced local parton density fluctuation is implemented in the AMPT to simulate the QCD phase transition dynamics. By studying the transverse momentum p(T) spectra and the elliptic flow of the multi-strangeness particles, such as Omega and phi, and the Omega/phi ratio as a function of p(T) in the AMPT, we find that the new development improves the description of experimental data. The study motivates further experimental investigations of Omega and phi production in phase II of the Beam Energy Scan program at RHIC.
KeywordHeavy-ion Collisions Superdense Hadronic Matter Qcd Phase-diagram Meson Production Transport Model Energy Flow Fluctuations Dependence Pion
DOI10.1007/s41365-018-0393-1
Indexed BySCI
Language英语
WOS IDWOS:000429382600009
Citation statistics
Cited Times:6[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.sinap.ac.cn/handle/331007/29092
Collection中科院上海应用物理研究所2011-2018年
Affiliation1.Jin, XH
2.Chen, JH
3.Ma, YG
4.Zhang, S
5.Zhang, CJ
6.Zhong, C
Recommended Citation
GB/T 7714
Jin, XH,Chen, JH,Ma, YG,et al. Omega and phi production in Au plus Au collisions at root s(NN),=11.5 and 7.7 GeV in a dynamical quark coalescence model[J]. NUCLEAR SCIENCE AND TECHNIQUES,2018,29(4):-.
APA Jin, XH,Chen, JH,Ma, YG,Zhang, S,Zhang, CJ,&Zhong, C.(2018).Omega and phi production in Au plus Au collisions at root s(NN),=11.5 and 7.7 GeV in a dynamical quark coalescence model.NUCLEAR SCIENCE AND TECHNIQUES,29(4),-.
MLA Jin, XH,et al."Omega and phi production in Au plus Au collisions at root s(NN),=11.5 and 7.7 GeV in a dynamical quark coalescence model".NUCLEAR SCIENCE AND TECHNIQUES 29.4(2018):-.
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