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Exploring Electromagnetic Field Effects and Constraining Transport Parameters of QGP using STAR BES-II data

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arxiv 2401.04838 v1 pith:OLJC4JA7 submitted 2024-01-09 nucl-ex hep-ex

classification nucl-exhep-ex
keywords initialelectromagneticflowcollisionsconstrainingcorrelationseffectsevolution
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abstract

Heavy-ion collisions undergo various stages in their evolution and it is crucial to disentangle the initial- and final-stage effects. In this work, we report measurements of two types of observables: (i) charge-dependent directed flow ($\Delta v_1$), which is sensitive to the initial ultra-strong electromagnetic fields, and (ii) flow correlations, such as $r_n (\eta)$ which is sensitive to the initial longitudinal de-correlation, and correlations among flow harmonics. These measurements contribute to constraining the initial state of the collisions, and through a comprehensive beam energy scan, we gain significant insights into the system evolution in the presence of initial spatial asymmetry and electromagnetic fields.

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Cited by 1 Pith paper

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  1. Spacetime profile of electromagnetic fields in intermediate-energy heavy-ion collisions

    hep-ph 2025-01 conditional novelty 6.0 of 10

    Intermediate-energy heavy-ion collisions produce event-averaged electromagnetic fields of order (50 MeV)^2 with a significant E·B component and a dominant electric-field spacetime volume.

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