Chiral Magnetic Effects in Nuclear Collisions

Wei Li, Gang Wang
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引用次数: 36

Abstract

The interplay of quantum anomalies with strong magnetic field and vorticity in chiral systems could lead to novel transport phenomena, such as the chiral magnetic effect (CME), the chiral magnetic wave (CMW) and the chiral vortical effect (CVE). In high-energy nuclear collisions, these chiral effects may survive the expansion of a quark-gluon plasma fireball and be detected in experiments. The experimental searches for the CME, the CMW and the CVE, have aroused extensive interest over the past couple of decades. The main goal of this article is to review latest experimental progress in search for these novel chiral transport phenomena at Relativistic Heavy Ion Collider at BNL and the Large Hadron Collider at CERN. Future programs to help reduce uncertainties and facilitate the interpretation of the data are also discussed.
核碰撞中的手性磁效应
在手性体系中,量子异常与强磁场和涡旋的相互作用可能导致新的输运现象,如手性磁效应(CME)、手性电磁波(CMW)和手性涡旋效应(CVE)。在高能核碰撞中,这些手性效应可能会在夸克-胶子等离子体火球的膨胀中幸存下来,并在实验中被检测到。在过去的几十年里,对CME, CMW和CVE的实验搜索引起了广泛的兴趣。本文的主要目的是综述在BNL的相对论重离子对撞机和CERN的大型强子对撞机上寻找这些新的手性输运现象的最新实验进展。还讨论了帮助减少不确定性和促进数据解释的未来计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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