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The effect of magnetization and electric polarization on the anomalous transport coefficients of a chiral fluid

机译:磁化和极化对手性流体异常输运系数的影响

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The effects of finite magnetization and electric polarization on dissipative and non-dissipative (anomalous) transport coefficients of a chiral fluid are studied. First, using the second law of thermodynamics as well as Onsager's time-reversal symmetry principle, the complete set of dissipative transport coefficients of this medium is derived. It is shown that the properties of the resulting shear and bulk viscosities are mainly affected by the anisotropy induced by external electric and magnetic fields. Then, using the fact that the anomaly induced currents do not contribute to entropy production, the corresponding algebro-differential equations to non-dissipative anomalous transport coefficients are derived in a certain derivative expansion. The solutions of these equations show that, within this approximation, anomalous transport coefficients are, in particular, given in terms of the electric susceptibility of the medium.
机译:研究了有限磁化强度和极化对手性流体的耗散和非耗散(异常)传输系数的影响。首先,利用热力学第二定律以及Onsager的时间逆对称原理,导出了该介质的耗散输运系数的完整集合。结果表明,所产生的剪切粘度和体粘度主要受外部电场和磁场引起的各向异性的影响。然后,利用异常感应电流无助于熵产生这一事实,以一定的导数展开式推导了对应于非耗散异常输运系数的代数-微分方程。这些方程的解表明,在该近似值内,特别是根据介质的电化率给出了异常的传输系数。

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