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首页> 外文期刊>Physical review, C >Effects of resonance weak decay and hadronic rescattering on the proton number fluctuations in Au plus Au collisions at root S-NN=5 GeV from a microscopic hadronic transport (JAM) model
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Effects of resonance weak decay and hadronic rescattering on the proton number fluctuations in Au plus Au collisions at root S-NN=5 GeV from a microscopic hadronic transport (JAM) model

机译:来自微观辐射传输(JAM)模型的谐振弱衰减和辐射衰减对Root S-NN = 5 GEV的质子数波动的影响

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Proton number fluctuation is sensitive observable to search for the QCD critical point in heavy-ion collisions. In this paper, we studied rapidity acceptance dependence of the proton cumulants and correlation functions in most central Au+Au collisions at root S-NN = 5 GeV from a microscopic hadronic transport model [the jet AA microscopic transportation model (JAM)]. At midrapidity, we found the effects of resonance weak decays and hadronic rescattering on the proton cumulants and correlation functions are small, but those effects get larger when further increasing the rapidity acceptance. On the other hand, we found the baryon number conservation is a dominant background effect on the rapidity acceptance dependence of proton number fluctuations. It leads to a strong suppression of cumulants and cumulant ratios as well as the negative proton correlation functions. We also studied those two effects on the energy dependence of cumulant ratios of net-proton distributions in most central Au+Au collisions at root S-NN = 5-200 GeV from the JAM model. This paper can serve as a noncritical baseline for a future QCD critical point search in heavy-ion collisions at the high baryon density region.
机译:质子数波动是敏感的,以寻找重离子碰撞中的QCD临界点。在本文中,我们研究了质子累积剂的快速接受依赖性,并且在远离微观辐射传输模型[射流AA微观运输模型(JAM)]中的大多数中央AU + AU碰撞中的质子累积剂和相关功能。在中溴磷,我们发现共振弱衰减和辐射复位对质子累积物的影响和相关函数小,但在进一步增加快速接受时,这些效果变大。另一方面,我们发现Baryon编号保护是对质子数波动的快速接受依赖性的主要背景效应。它导致强烈抑制累积剂和累积量比以及负质质相关功能。我们还研究了从JAM模型的大多数中央Au + Au碰撞中的Net-Proton分布中累积量依赖性的能量依赖性的两种影响。本文可以作为未来QCD关键点搜索的非批判基线,在高压顿密度区域处的重离子碰撞中的重读点搜索。

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