论文标题

$λ$ hyperons的本地和全局极化跨Rhic-Bes Energies:旋转厅效应,初始状况和重子扩散的作用

Local and global polarization of $Λ$ hyperons across RHIC-BES energies: the roles of spin hall effect, initial condition and baryon diffusion

论文作者

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

论文摘要

我们对$λ$的局部和全局自旋极化和$ \Overlineλ$ hyperons进行了系统研究,该研究通过(3+1)二维的Clvisc水力动力学模型与AMPT和AMPT和SMASH初始条件。遵循量子动力学理论,我们将极化矢量分解为由热涡度,剪切张量和自旋霍尔效应(SHA)引起的部分。我们发现,她诱导的极化和总偏振强烈取决于初始条件。 GEV $ 7.7 $,她给出了相当大的贡献,甚至可以沿着梁方向沿局部极化的迹象,以获得AMPT初始条件,这对于Smash初始条件而言并未观察到。同时,沿着AMPT初始条件引起的平面外向的局部极化并不总是随着碰撞能量的降低而增加。接下来,我们发现沿光束方向的极化对重子扩散系数敏感,但是沿着空间外方向的局部极化不是。我们的$λ$和$ \overlineλ$全球两极分化的结果与星数据非常吻合。有趣的是,由于各种竞争效果,$ \Overlineλ$的全球两极分化并不总是大于$λ$的全球两极分化。我们的发现有助于理解相对论重离子碰撞中夸克 - 胶子等离子体的极化现象和详细结构。

We perform a systematic study on the local and global spin polarization of $Λ$ and $\overlineΛ$ hyperons in relativistic heavy-ion collisions at beam energy scan energies via the (3+1)-dimensional CLVisc hydrodynamics model with AMPT and SMASH initial conditions. Following the quantum kinetic theory, we decompose the polarization vector as the parts induced by thermal vorticity, shear tensor and the spin Hall effect (SHE). We find that the polarization induced by SHE and the total polarization strongly depends on the initial conditions. At $7.7$GeV, SHE gives a sizeable contribution and even flips the sign of the local polarization along the beam direction for AMPT initial condition, which is not observed for SMASH initial condition. Meanwhile, the local polarization along the out-of-plane direction induced by SHE with AMPT initial condition does not always increase with decreasing collision energies. Next, we find that the polarization along the beam direction is sensitive to the baryon diffusion coefficient, but the local polarization along the out-of-plane direction is not. Our results for the global polarization of $Λ$ and $\overlineΛ$ agree well with the STAR data. Interestingly, the global polarization of $\overlineΛ$ is not always larger than that of $Λ$ due to various competing effects. Our findings are helpful for understanding the polarization phenomenon and the detailed structure of quark-gluon plasma in relativistic heavy-ion collisions.

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