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

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arxiv 2501.18171 v2 pith:23LAJQII submitted 2025-01-30 hep-ph nucl-th

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

classification hep-ph nucl-th
keywords fieldsspacetimeelectromagneticproducedcollisionsfieldheavy-ionintermediate-energy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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I numerically estimate the spacetime profile of the electromagnetic fields produced in intermediate-energy heavy-ion collisions at $\sqsNN=2.4\,\mathchar`-\,7.7\;{\rm GeV}$ for a wide range of impact parameters $b=0\,\mathchar`-\,9\;{\rm fm}$, using a hadronic cascade model, JAM (Jet AA Microscopic transport model). I demonstrate that (1) the produced electromagnetic fields are as strong as $eE, eB = {\mathcal O}((50\;{\rm MeV})^2)$; (2) that the produced fields extend in spacetime about $V_4 = {\mathcal O}((10\;{\rm fm})^4)$; (3) that the magnetic field dominates around the collision point, while the other broad regions of spacetime are dominated by the electric field; and (4) that a topological electromagnetic-field configuration such that ${\bm E}\cdot {\bm B} \neq 0$ is realized.

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