Abstract
AbstractWe have studied the spin polarization of $$\Lambda $$
Λ
hyperons in heavy ion collisions at center-of-mass energies $$\sqrt{s_\textrm{NN}}= 200$$
s
NN
=
200
GeV and $$\sqrt{s_\textrm{NN}}= 5.02$$
s
NN
=
5.02
TeV carried out at RHIC and LHC colliders. We have calculated the mean spin vector at local thermodynamic equilibrium, including all known first-order terms in the gradients of the thermo-hydrodynamic fields, assuming that the hadronization hypersurface has a uniform temperature. We have also included the feed-down contributions to the polarization of $$\Lambda $$
Λ
stemming from the decays of polarized $$\Sigma ^*$$
Σ
∗
and $$\Sigma ^0$$
Σ
0
hyperons. The obtained results are in good agreement with the data. In general, the component of the spin vector along the global angular momentum, orthogonal to the reaction plane, shows strong sensitivity to the initial longitudinal flow velocity. Furthermore, the longitudinal component of the spin vector turns out to be very sensitive to the bulk viscosity of the plasma at the highest LHC energy. Therefore, the azimuthal dependence of spin polarization can effectively constrain the initial hydrodynamic conditions and the transport coefficients of the quark gluon plasma.
Funder
Ministero dell’Università e della Ricerca
Basic Energy Sciences
European Commission
Grantová Agentura České Republiky
Publisher
Springer Science and Business Media LLC