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The effect of vorticity on the dynamical magnetic fields in heavy-ion collisions

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arxiv 2408.14077 v2 pith:DWKR7WMT submitted 2024-08-26 hep-ph hep-thnucl-th

classification hep-phhep-thnucl-th
keywords magneticcollisioncollisionsfieldsvorticityeffectenergiesevolution
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abstract

Magnetic fields in heavy-ion collisions are pivotal and subject to diverse factors. In this study, we quantitatively investigate the impact of fluid vorticity on the evolution of magnetic fields in the 20-50\% centrality class in Au+Au collisions, with collision energies of $\sqrt{s_{NN}}=(7.7, 14.5, 19.6, 27, 39, 62.4, 200)$ GeV. Our results indicate that fluid vorticity leads to a delay in the evolution of the magnetic field, in which this effect becomes more pronounced as the collision energy decreases. Additionally, we have calculated the mean magnetic field values on the freeze-out hypersurface for various collision energies. Our simulation results align with the values inferred from experimental data of $\bar{\Lambda}-\Lambda$, within the error margins.

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  1. 1+1 dimensional relativistic viscous non-resistive magnetohydrodynamics with longitudinal boost invariance

    nucl-th 2024-11 conditional novelty 5.0 of 10

    New analytic and numerical solutions for 1+1D viscous magnetohydrodynamics show that viscosity and a decaying magnetic field heat the fluid and produce an early temperature peak.

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