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Dynamical evolution of magnetic field in the pre-equilibrium quark-gluon plasma

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arxiv 2104.00831 v1 pith:2SJ2YLPG submitted 2021-04-02 nucl-th hep-phnucl-ex

classification nucl-thhep-phnucl-ex
keywords magneticfieldcoupledsystemcollisionsdynamicalplasmapre-equilibrium
verification ladder T0 review T1 audit T2 compute T3 formal
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High-energy heavy-ion collisions generate extremely strong magnetic field which plays a key role in a number of novel quantum phenomena in quark-gluon plasma (QGP), such as the chiral magnetic effect (CME). However, due to the complexity in theoretical modellings of the coupled electromagnetic fields and the QGP system, especially in the pre-equilibrium stages, the lifetime of the magnetic field in the QGP medium remains undetermined. We establish, for the first time, a kinetic framework to study the dynamical decay of the magnetic field in the early stages of a weakly coupled QGP by solving the coupled Boltzmann and Maxwell equations. We find that at late times a magnetohydrodynamical description of the coupled system emerges. With respect to realistic collisions at RHIC and the LHC, we estimate the residual strength of the magnetic field in the QGP when the system start to evolve hydrodynamically.

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Cited by 1 Pith paper

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  1. Investigating effects of the electrical conductivity of QCD matter on charge-dependent directed flow

    nucl-th 2025-02 conditional novelty 4.0 of 10

    Using 3+1D resistive magnetohydrodynamics, the authors show that the slope of proton-antiproton charge-dependent directed flow in Au+Au collisions at 200 GeV varies with the QGP's electrical conductivity and can chang...

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