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Relaxation time for quark spin and thermal vorticity alignment in heavy-ion collisions

机译:重离子碰撞中夸克自旋的弛豫时间和热涡度对准

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We compute the relaxation time for quark/antiquark spin and thermal vorticity alignment in a quark-gluon plasma at finite temperature and quark chemical potential. We model the interaction of quark/antiquark spin with thermal vorticity as driven by a phenomenological modification of the elementary quark interaction with gluons. We find that in a scenario where the angular velocity of the quark-gluon plasma produced in a peripheral heavy-ion collision is small, quarks/antiquarks take a long time to align their spin with the vorticity. However, when the angular velocity created in the reaction is large, the alignment is efficient and well within the lifetime of the system created in the reaction. The relaxation time is larger for antiquarks which points out to a difference for the polarization of hadrons and antihadrons when this alignment is preserved during hadronization.
机译:我们计算了在一定温度和夸克化学势下,夸克-胶子等离子体中夸克/反夸克自旋和热涡度对准的弛豫时间。我们模拟了夸克/反夸克自旋与热涡旋的相互作用,这是由与胶子的基本夸克相互作用的现象学修正驱动的。我们发现,在周围重离子​​碰撞中产生的夸克-胶子等离子体的角速度较小的情况下,夸克/反夸克需要很长时间才能使它们的自旋与涡度对齐。然而,当在反应中产生的角速度较大时,对准是有效的并且恰好在反应中产生的系统的寿命内。反夸克的弛豫时间更长,这表明当强子化过程中保持这种排列时,强子和反强子的极化存在差异。

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