Photon-induced J/ψ as a linearly polarized probe of collision geometry in relativistic heavy-ion collisions
STAR Collaboration
Abstract
In relativistic heavy-ion collisions, the linear polarization of quasi-real photons can correlate the spin orientation of photon-induced vector mesons with the collision geometry. To explore this sensitivity, we present the first measurement of the decay angular distribution of photon-induced J/ψ with respect to the event plane in heavy-ion collisions with hadronic overlap. The analysis uses Ru+Ru and Zr+Zr collisions at a nucleon--nucleon center-of-mass energy of sNN=200 GeV recorded by STAR. After correcting for the finite event-plane resolution and subtracting the residual hadronic contribution, we extract a negative second-order modulation, A2 phot = -0.39 0.11~(stat.) 0.04~(sys.), for |yee|<0.8, p Tee<0.2~GeV/c, and 30--80% centrality. This modulation provides evidence that the J/ψ polarization is correlated with the event plane, as expected for linearly polarized photons. The observed modulation establishes polarized J/ψ photoproduction as a direct probe of the transverse orientation of the initial collision geometry.
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