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Spin alignment of quarkonia in vortical quark-gluon plasma

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arxiv 2502.05866 v2 pith:VYWHAX3W submitted 2025-02-09 hep-ph nucl-exnucl-th

Spin alignment of quarkonia in vortical quark-gluon plasma

classification hep-ph nucl-exnucl-th
keywords spindissociationdependentalignmentplasmaquark-gluonquarkoniavortical
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The spin alignment of $J/\psi$ with respect to event plane in relativistic heavy ion collisions exhibits a significant signal. We propose a possible mechanism for spin alignment through spin dependent dissociation of quarkonia in a vortical quark-gluon plasma. The spin dependent dissociation is realized through inelastic scattering between constituents of quarkonium and those of quark-gluon plasma polarized by the vorticity. The spin dependent dissociation rate is found to depend on the directions of vorticity, quantization axis, and quark momentum. We implement our results in a dissociation dominated evolution model for quarkonia in the Bjorken flow, finding the spin $0$ state is slightly suppressed compared to the average of the other two, which is consistent with the sign found in experiments. We also find absence of logarithmic enhancement in binding energy in the vortical correction to dissociation rate, which is understood from the requirement that a spin dependent dissociation can only come from quark coupling to a pair of chromomagnetic and chromoelectric field.

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