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化学冻结的磁移与电荷涨落

Magnetic Shift of the Chemical Freeze-out and Electric Charge Fluctuations.

作者信息

Fukushima Kenji, Hidaka Yoshimasa

机构信息

Department of Physics, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

Theoretical Research Division, Nishina Center, RIKEN, Wako 351-0198, Japan.

出版信息

Phys Rev Lett. 2016 Sep 2;117(10):102301. doi: 10.1103/PhysRevLett.117.102301. Epub 2016 Sep 1.

Abstract

We discuss the effect of a strong magnetic field on the chemical freeze-out points in ultrarelativistic heavy-ion collisions. As a result of inverse magnetic catalysis or magnetic inhibition, the crossover onset to hot and dense matter out of quarks and gluons should be shifted to a lower temperature. To quantify this shift we employ the hadron resonance gas model and an empirical condition for the chemical freeze-out. We point out that the charged particle abundances are significantly affected by the magnetic field so that the electric charge fluctuation is largely enhanced, especially at high baryon density. The charge conservation partially cancels the enhancement, but our calculation shows that the electric charge fluctuation could serve as a magnetometer. We find that the fluctuation exhibits a crossover behavior rapidly increased for eB≳(0.4  GeV)^{2}, while the charge chemical potential has smoother behavior with an increasing magnetic field.

摘要

我们讨论了强磁场对超高能重离子碰撞中化学冻结点的影响。由于逆磁催化或磁抑制作用,夸克和胶子形成的热密物质的交叉起始温度应会降低。为了量化这种温度变化,我们采用强子共振气体模型和化学冻结的经验条件。我们指出,磁场对带电粒子丰度有显著影响,从而极大地增强了电荷涨落,特别是在高重子密度下。电荷守恒部分抵消了这种增强,但我们的计算表明,电荷涨落可作为一种磁强计。我们发现,当eB≳(0.4 GeV)²时,涨落呈现出快速增加的交叉行为,而电荷化学势随磁场增加的变化则较为平缓。

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