论文标题

相对论电阻式磁动力膨胀的定向流动,用于对称和非对称碰撞系统

Directed flow in relativistic resistive magneto-hydrodynamic expansion for symmetric and asymmetric collision systems

论文作者

Nakamura, Kouki, Miyoshi, Takahiro, Nonaka, Chiho, Takahashi, Hiroyuki R.

论文摘要

我们基于相对论电阻式磁动力框架为高能重型离子碰撞构建动力学模型。使用我们新开发的(3+1) - 维度相对论的电阻性磁动力学代码,我们研究了对称和不对称碰撞系统中的磁磁动力扩张,作为高能重型离子碰撞的首次应用。作为电磁场的现实初始条件,我们考虑了麦克斯韦方程的解决方案,其源是带电粒子的源项,沿梁轴的方向移动,包括介质的有限恒定恒定电导率。我们评估了RHIC能量时对称和不对称碰撞中的定向流动。我们发现有限电导率对不对称碰撞系统中的定向流动的显着影响。我们确认,由于两个不同的碰撞核产生的电场不对称,与欧姆传导相关的耗散传递一定的能量转移发生在不对称的碰撞系统中。因为这种能量传递使中等平坦的压力梯度,所以有向流的生长降低。

We construct a dynamical model for high-energy heavy-ion collision based on the relativistic resistive magneto-hydrodynamic framework. Using our newly developed (3+1)-dimensional relativistic resistive magneto-hydrodynamics code, we investigate magneto-hydrodynamic expansion in symmetric and asymmetric collision systems as a first application to high-energy heavy-ion collisions. As a realistic initial condition for electromagnetic fields, we consider the solutions of the Maxwell equations with the source term of point charged particles moving in the direction of the beam axis, including finite constant electrical conductivity of the medium. We evaluate the directed flow in the symmetric and asymmetric collisions at RHIC energy. We find a significant effect of finite electrical conductivity on the directed flow in the asymmetric collision system. We confirm that a certain amount of energy transfer by dissipation associated with Ohmic conduction occurs in the asymmetric collision system because of asymmetry of the electric field produced by two different colliding nuclei. Because this energy transfer makes the pressure gradient of the medium flatter, the growth of directed flow decreases.

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