Anomalous transport, massive gravity theories and holographic momentum relaxation

E. Megías
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Abstract

Quantum anomalies give rise to new non-dissipative transport phenomena in relativistic fluids induced by external electromagnetic fields and vortices. These phenomena can be studied in holographic models with Chern-Simons couplings dual to anomalies in field theory. We perform a computation in AdS/CFT of the anomalous transport coefficients in a holographic massive gravity model, and find that the anomalous conductivities turn out to be independent of the holographic disorder couplings of the model. To arrive at this result we suggest a new definition of the energy-momentum tensor in presence of the gauge-gravitational Chern-Simons coupling. We also compute the electric DC conductivity and find that it can vanish for certain values of the disorder couplings.
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异常输运,大质量引力理论和全息动量松弛
量子异常引起了由外部电磁场和涡旋诱导的相对论性流体中新的非耗散输运现象。这些现象可以在场理论中具有chen - simons耦合对偶的全息模型中研究。在AdS/CFT中对全息大质量引力模型中的异常输运系数进行了计算,发现异常电导率与模型的全息无序耦合无关。为了得到这个结果,我们提出了一种新的能量动量张量的定义,在测量引力陈-西蒙斯耦合的存在下。我们还计算了直流电导率,发现它在一定的无序耦合值下可以消失。
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