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首页> 外文期刊>Annals of Physics >Anomalous chiral transport in heavy ion collisions from Anomalous-Viscous Fluid Dynamics
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Anomalous chiral transport in heavy ion collisions from Anomalous-Viscous Fluid Dynamics

机译:异常离子碰撞中的异常手性运输来自异常粘性流体动力学

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摘要

Chiral anomaly is a fundamental aspect of quantum theories with chiral fermions. How such microscopic anomaly manifests itself in a macroscopic many-body system with chiral fermions, is a highly nontrivial question that has recently attracted significant interest. As it turns out, unusual transport currents can be induced by chiral anomaly under suitable conditions in such systems, with the notable example of the Chiral Magnetic Effect (CME) where a vector current (e.g. electric current) is generated along an external magnetic field. A lot of efforts have been made to search for CME in heavy ion collisions, by measuring the charge separation effect induced by the CME transport. A crucial challenge in such effort, is the quantitative prediction for the CME signal. In this paper, we develop the Anomalous-Viscous Fluid Dynamics (AVFD) framework, which implements the anomalous fluid dynamics to describe the evolution of fermion currents in QGP, on top of the neutral bulk background described by the VISH2+1 hydrodynamic simulations for heavy ion collisions. With this new tool, we quantitatively and systematically investigate the dependence of the CME signal to a series of theoretical inputs and associated uncertainties. With realistic estimates of initial conditions and magnetic field lifetime, the predicted CME signal is quantitatively consistent with measured change separation data in 200GeV Au-Au collisions. Based on analysis of Au-Au collisions, we further make predictions for the CME observable to be measured in the planned isobaric (Ru-Ru v.s. Zr-Zr) collision experiment, which could provide a most decisive test of the CME in heavy ion collisions. (C) 2018 Elsevier Inc. All rights reserved.
机译:手性异常是具有手性污物的量子理论的基本方面。这种微观异常如何在具有手性胎儿的宏观许多身体系统中表现出来,这是一个高度非暴力的问题,最近引起了重大兴趣。正明原样,在这种系统中的合适条件下,可以通过手性异常诱导异常的传输电流,其中具有沿着外部磁场产生矢量电流(例如电流)的手性磁效应(CME)的显着示例。已经通过测量由CME传输引起的电荷分离效果来搜索重型离子碰撞中的许多努力。这种努力的至关重要的挑战是CME信号的定量预测。在本文中,我们开发了异常 - 粘性流体动力学(AVFD)框架,其实现了异常的流体动力学,以描述QGP中的QGP中的度米焦电流的演变,在由VISH2 + 1流体动力模拟的中性散装背景的顶部进行重型离子碰撞。通过这种新工具,我们定量地和系统地研究了CME信号对一系列理论输入和相关的不确定性的依赖性。利用初始条件和磁场寿命的现实估计,预测的CME信号与200GEV AU-AU冲突中的测量变化分离数据定量一致。基于AU-AU碰撞的分析,我们进一步使得在计划的异常(Ru-Ru与Zr-Zr)碰撞实验中测量的CME可观察到的预测,这可以提供重离子碰撞中的CME最决定性的测试。 (c)2018年Elsevier Inc.保留所有权利。

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  • 来源
    《Annals of Physics 》 |2018年第2018期| 共23页
  • 作者单位

    Indiana Univ Phys Dept 2401 N Milo B Sampson Lane Bloomington IN 47408 USA;

    Beihang Univ Sch Phys &

    Nucl Energy Engn Beijing 100191 Peoples R China;

    Indiana Univ Phys Dept 2401 N Milo B Sampson Lane Bloomington IN 47408 USA;

    Indiana Univ Phys Dept 2401 N Milo B Sampson Lane Bloomington IN 47408 USA;

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  • 正文语种 eng
  • 中图分类 物理学 ;
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