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Shear-induced Anomalous Transport and Charge Asymmetry of Triangular Flow in Heavy-ion Collisions by Buzzegoli, Matteo; Kharzeev, Dmitri E.; Liu, Yu-Chen; Shi, Shuzhe; Voloshin, Sergei A.; Yee, Ho-Ung is a scholarly article available to read on EtoBox.

What is Shear-induced Anomalous Transport and Charge Asymmetry of Triangular Flow in Heavy-ion Collisions about?

Chiral anomaly implies the existence of non-dissipative transport phenomena, such as the chiral magnetic effect. At second order in the derivative expansion, novel quantum transport phenomena emerge. In this paper, we focus on the anomalous transport driven by a combination of shear, vorticity and magnetic field. We find that the corresponding transport phenomena -- shear-induced chiral magnetic and chiral vortical effects (siCME and siCVE) -- induce characteristic charge correlations among the hadrons produced in heavy ion collisions. We propose the charge asymmetry of triangular flow as a signature of the anomalous transport, and estimate the strength of the signal, as well as the background, using hydrodynamical model simulations. We find that the signal-to-background ratio for the proposed observable is favorable for experimental detection.

Author
Buzzegoli, Matteo; Kharzeev, Dmitri E.; Liu, Yu-Chen; Shi, Shuzhe; Voloshin, Sergei A.; Yee, Ho-Ung
Published
2022
Language
EN