Spin polarization of $Λ$ hyperons along beam direction in p+Pb collisions at $\sqrt{s_{NN}}=8.16$ TeV using hydrodynamic approaches

Cong Yi, Xiang-Yu Wu, Jie Zhu, Shi Pu, Guang-You Qin
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Abstract

We have implemented the 3+1 dimensional CLVisc hydrodynamics model with TRENTO-3D initial conditions to investigate the spin polarization of $\Lambda$ hyperons along the beam direction in p+Pb collisions at $\sqrt{s_{NN}} = 8.16$ TeV. Following our previous theoretical framework based on quantum kinetic theory, we consider three different scenarios: $\Lambda$ equilibrium, $s$ quark equilibrium, and iso-thermal equilibrium scenarios. We have computed the second Fourier sine coefficients of spin polarization along the beam direction, denoted as $\left\langle P_{z} \sin 2(\phi_{p} - \Psi_{2}) \right\rangle$, with $\phi_p$ being the azimuthal angle relative to the second-order event plane $\Psi_{2}$, as functions of multiplicity and transverse momentum in the three scenarios. Additionally, we have also computed the spin polarization along the beam direction, $P_{z}$, as a function of the azimuthal angle. We find that the spin polarization induced by thermal vorticity always provides an opposite contribution compared to the shear-induced polarization in p+Pb collisions. The total spin polarization computed by the current hydrodynamic model disagrees with the data measured by LHC-CMS experiments. Our findings imply that other non-flow effects may play a crucial role in p+Pb collisions.
在 $\sqrt{s_{NN}}=8.16$ TeV 的 p+Pb 对撞中,采用流体力学方法使Λ$超子沿束流方向发生自旋极化
我们在TRENTO-3D初始条件下实施了3+1维CLVisc流体力学模型,以研究在$\sqrt{s_{NN}} = 8.16$TeV的p+Pb对撞中$\Lambda$质子沿束流方向的自旋极化。按照我们之前基于量子动力学理论的理论框架,我们考虑了三种不同的情况:$\Lambda$ 平衡、$s$ 夸克平衡和等热平衡。我们计算了自旋极化沿光束方向的二次傅里叶正弦系数,表示为:$\left\langle P_{z}\sin 2(\phi_{p} - \Psi_{2}) \right/rangle$,其中$\phi_p$是相对于二阶事件平面$\Psi_{2}$的方位角,它是三种情况下倍率和横动量的函数。此外,我们还计算了沿光束方向的自旋极化($P_{z}$)与方位角的函数关系。我们发现,与p+Pb碰撞中剪切诱导的极化相比,热涡度诱导的自旋极化总是提供了相反的贡献。当前流体力学模型计算的总自旋极化与 LHC-CMS 实验测量的数据不一致。我们的发现意味着其他非流动效应可能在p+Pb对撞中起着至关重要的作用。
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