Charge-dependent flow induced by electromagnetic fields in heavy ion collisions

Publication date

2021-01

Authors

Gursoy, U.ISNI 0000000392717860
Kharzeev, D. E.
Marcus, EricISNI 0000000524167435
Rajagopal, K.
Shen, C.ISNI 0000000527221628

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

The colliding heavy ions create extremely strong magnetic and electric fields that significantly affect the evolution of the produced quark-gluon plasma (QGP). The knowledge of these fields is essential for establishing the role of topological fluctuations in the QGP through the chiral magnetic effect and related anomaly-induced phenomena. In this talk, we describe our work on the evolution of the QGP in electric and magnetic fields in the framework of hydrodynamics supplemented, in a perturbative fashion, by the dynamical electromagnetism. The evolution of the QGP fluid is described within the iEBE-VISHNU framework. We find that the electromagnetically induced currents result in a a charge-odd directed flow Δν 1 and a charge-odd Δν 3 flow both of which are odd in rapidity. While the predicted magnitude of these charge-odd flows agrees with the data from RHIC and LHC, the sign of the predicted asymmetry between the flows of positive and negative hadrons is opposite to the data.

Keywords

collective flow, heavy ion collisions, quark-gluon plasma, Taverne, Nuclear and High Energy Physics

Citation

Gursoy, U, Kharzeev, D E, Marcus, E, Rajagopal, K & Shen, C 2021, 'Charge-dependent flow induced by electromagnetic fields in heavy ion collisions', Nuclear Physics A, vol. 1005, 121837. https://doi.org/10.1016/j.nuclphysa.2020.121837