论文标题

与多平面累积物的重离子碰撞中的流平面去相关

Flow-plane decorrelations in heavy-ion collisions with multiple-plane cumulants

论文作者

Xu, Zhiwan, Wu, Xiatong, Sword, Caleb, Wang, Gang, Voloshin, Sergei A., Huang, Huan Zhong

论文摘要

不同(伪)速度($η$)处的局部流平面之间的方位相关性可能会揭示重型离子碰撞中初始核物质密度分布的重要细节。分数比($ r_2 $)及其衍生物($ f_2 $)的广泛实验测量显示了纵向流平面去相关的证据。但是,非流量效应也会影响这一可观察到的现象,并防止对该现象的定量理解。在本文中,为了区分去相关和非流量效果,我们提出了一种可观察到的新累积式$ T_2 $,这在很大程度上抑制了非流量。对不同初始状态场景和非流量效应的技术敏感性通过简单的蒙特卡洛模型进行了测试,最后,该方法应用于通过$ \ sqrt {s _ {s _ {\ rm nn}} = 200 $ GEV的多相传输模型(AMPT)模拟的事件。我们还强调,独特的去相关信号不仅需要可观察到的正确迹象,而且还需要其对参考流平面的$η$窗口的适当依赖,才能与相关的去相关图片一致。

The azimuthal correlations between local flow planes at different (pseudo)rapidities ($η$) may reveal important details of the initial nuclear matter density distributions in heavy-ion collisions. Extensive experimental measurements of a factorization ratio ($r_2$) and its derivative ($F_2$) have shown evidence of the longitudinal flow-plane decorrelation. However, nonflow effects also affect this observable and prevent a quantitative understanding of the phenomenon. In this paper, to distinguish decorrelation and nonflow effects, we propose a new cumulant observable, $T_2$, which largely suppresses nonflow. The technique sensitivity to different initial-state scenarios and nonflow effects are tested with a simple Monte Carlo model, and in the end, the method is applied to events simulated by a multiphase transport model (AMPT) for Au+Au collisions at $\sqrt{s_{\rm NN}} =200$ GeV. We also emphasize that a distinct decorrelation signal requires not only the right sign of an observable, but also its proper dependence on the $η$-window of the reference flow plane, to be consistent with the pertinent decorrelation picture.

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