Hydrodynamic effects on spin polarization along the beam direction in Au+Au and p+Pb collisions

Abstract

We investigate hydrodynamic effects on the spin polarization of hyperons in Au+Au collisions at sNN = 200 GeV and p+Pb collisions at sNN = 8.16 TeV using the CLVisc hydrodynamic framework. We present numerical results for the second Fourier sine coefficient of the longitudinal spin polarization, Pz 2(φp - 2) , as a function of multiplicity (centrality) under three equilibrium scenarios: equilibrium, s-quark equilibrium, and isothermal equilibrium. We highlight the respective roles of thermal vorticity and the thermal-shear tensor in generating Pz 2(φp - 2) across collision systems and scenarios.

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