Fluid dynamics study of the $$\varLambda $$ Λ polarization for Au + Au collisions at $$\sqrt{s_{NN}}=200$$ sNN=200 GeV

Abstract With a Yang–Mills field, stratified shear flow initial state and a high resolution ($$3+1$$ 3+1 )D particle-in-cell relativistic (PICR) hydrodynamic model, we calculate the $$\varLambda $$ Λ polarization for peripheral Au + Au collisions at RHIC energy of $$\sqrt{S_{NN}}=200$$ SNN=200 GeV....

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Bibliographic Details
Main Authors: Yilong Xie, Dujuan Wang, Laszlo Pal Csernai
Format: Article
Language:English
Published: SpringerOpen 2020-01-01
Series:European Physical Journal C: Particles and Fields
Online Access:https://doi.org/10.1140/epjc/s10052-019-7576-8
Description
Summary:Abstract With a Yang–Mills field, stratified shear flow initial state and a high resolution ($$3+1$$ 3+1 )D particle-in-cell relativistic (PICR) hydrodynamic model, we calculate the $$\varLambda $$ Λ polarization for peripheral Au + Au collisions at RHIC energy of $$\sqrt{S_{NN}}=200$$ SNN=200 GeV. The obtained longitudinal polarization in our model agrees with the experimental signature and the quadrupole structure on transverse momentum plane. It is found that the relativistic correction (2nd term), arising from expansion and from the time component of the thermal vorticity, plays a crucial role in our results. This term is changing sign and exceeds the first term, arising from the classical vorticity. Finally, the global polarization in our model shows no significant dependence on rapidity, which agrees with the experimental data. It is also found that the second term flattens the sharp peak arising from the classical vorticity (1st term).
ISSN:1434-6044
1434-6052