论文标题

强力外部磁场中的手性流体动力学

Chiral hydrodynamics in strong external magnetic fields

论文作者

Ammon, Martin, Grieninger, Sebastian, Hernandez, Juan, Kaminski, Matthias, Koirala, Roshan, Leiber, Julian, Wu, Jackson

论文摘要

我们构建了(3+1)的一般流体动力学描述,具有有效的磁场理论方法,受强大外部磁场的经过强大的外部磁场。我们确定能量量张量和轴向电荷电流的本构方程,部分是由生成功能的。此外,我们得出了将能量量张量的两点函数和电荷电流与27个传输系数相关的库比公式:8个独立的热力学,4个独立的非隔离性流体动力和10个独立的独立耗散性流体动力传输系数。五个ONSAGER关系使另外5个运输系数取决于。我们发现了四种新型的传输效应,这些效应是在我们称为剪切诱导的电导率的,两个膨胀引起的纵向电导率和剪切引起的霍尔电导率中编码的。值得注意的是,剪切诱导的霍尔电导率构成了一种新型的非疾病运输效应。作为演示,我们通过全息图在强耦合量子流体中明确计算所有运输系数。

We construct the general hydrodynamic description of (3+1)-dimensional chiral charged (quantum) fluids subject to a strong external magnetic field with effective field theory methods. We determine the constitutive equations for the energy-momentum tensor and the axial charge current, in part from a generating functional. Furthermore, we derive the Kubo formulas which relate two-point functions of the energy-momentum tensor and charge current to 27 transport coefficients: 8 independent thermodynamic, 4 independent non-dissipative hydrodynamic, and 10 independent dissipative hydrodynamic transport coefficients. Five Onsager relations render 5 more transport coefficients dependent. We uncover four novel transport effects, which are encoded in what we call the shear-induced conductivity, the two expansion-induced longitudinal conductivities and the shear-induced Hall conductivity. Remarkably, the shear-induced Hall conductivity constitutes a novel non-dissipative transport effect. As a demonstration, we compute all transport coefficients explicitly in a strongly coupled quantum fluid via holography.

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