论文标题
重型离子碰撞中的动态磁场
Dynamical magnetic fields in heavy-ion collisions
论文作者
论文摘要
重型离子碰撞中的磁场是许多有趣现象的重要成分,例如手性磁效应,手性磁波,$ d^0 $梅森的定向流量$ v_1 $ n和$λ$/$ \ \barλ$的旋转极化。然而,对这些现象的定量研究遭受了对这些领域在碰撞产生的媒介中的动态演化的有限理解,这仍然是一个关键且具有挑战性的问题。在真空中,来自碰撞核衰减的初始磁场在真空中很快,但是由于电气传导夸克和反quark,它们的寿命可以通过中等反应扩展。在这里,我们通过数值求解麦克斯韦的方程式与粘性流体动力学描述的扩展介质同时求解麦克斯韦的方程,对粘液水动力学的扩展介质进行详细分析,这是在流体进化中可忽略不计的背部反应。我们的结果表明,晚期磁场有相当大的增强,其大小取决于火球膨胀以及流体动力学阶段之前和期间的培养基电导率。
The magnetic fields in heavy-ion collisions are important ingredients for many interesting phenomena, such as the Chiral Magnetic Effect, Chiral Magnetic Wave, the directed flow $v_1$ of $D^0$ mesons and the splitting of the spin polarization of the $Λ$/$\barΛ$. Quantitative studies of these phenomena however suffer from limited understanding on the dynamical evolution of these fields in the medium created by the collisions, which remains a critical and challenging problem. The initial magnetic fields from the colliding nuclei decay very fast in the vacuum but their lifetime could be extended through medium response due to electrically conducting quarks and antiquarks. Here we perform a detailed analysis of such medium effect on the dynamical magnetic fields by numerically solving the Maxwell's equations concurrently with the expanding medium described by viscous hydrodynamics, under the assumption of negligible back reaction of the fields on the fluid evolution. Our results suggest a considerable enhancement of late time magnetic fields, the magnitude of which depends sensitively on the fireball expansion as well as the medium electric conductivity both before and during hydrodynamic stage.