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Realistic Implementation of Chiral Magnetic Wave in Heavy Ion Collisions

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arxiv 1311.2574 v2 pith:BCSHPRH4 submitted 2013-11-11 nucl-th nucl-ex

classification nucl-thnucl-ex
keywords chiraleffectmagneticparameterphaserealisticresultsslope
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Chiral Magnetic Wave (CMW) is a gapless collective excitation of chiral charges along the direction of magnetic field in the Quark-Gluon Plasma that arises from the triangle anomaly of QCD. We perform reliable study of the CMW in the realistic simulation of heavy ion collisions, and find that the CMW contributions to the charge dependent elliptic flow of pions, $\Delta v_2 = v_2(\pi^-)-v_2(\pi^+)$, linearly depending on the net charge asymmetry $A_\pm\equiv (N_+-N_-)/(N_++N_-)$ with a positive slope $r$, is comparable to the recent experimental results from RHIC. We identify "Freezeout Hole Effect", which is a direct consequence of the propagation of CMW during the realistic evolution of fireball, as the dominant physics effect responsible for a sizable contribution from the CMW to the slope parameter $r$, and emphasize that a proper treatment of the freeze out condition is crucial in any reliable computation of the CMW contribution to the slope parameter $r$. We also implement chiral phase transition effect in our study, which illustrates the sensitivity of the results to chiral phase transition temperature, and suggest that the CMW can be an important probe of QCD chiral phase transition. Our results on the impact parameter dependence compare well with the RHIC experiments. We also give predictions for the LHC energy.

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Cited by 1 Pith paper

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  1. Experimental Search for the Chiral Magnetic Effect in Relativistic Heavy-Ion Collisions: A Perspective

    nucl-ex 2025-02 conditional novelty 3.0 of 10

    The chiral magnetic effect in heavy-ion collisions remains unconfirmed, with current data giving a 2.9-sigma hint in Au+Au and an upper limit near 10% in isobar collisions.

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