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Time-reversal odd transport in bilayer graphene: Hall conductivity and Hall viscosity

Abstract

We consider the time-reversal odd dynamics of the bilayer graphene at low energies in the quantum Hall regime. A generating functional for the effective action that captures the electromagnetic response to all orders in momentum and frequency is presented and evaluated to the third order in the space-time gradient O(∂³). In addition, we calculate the Hall viscosity and derive an explicit relationship with the q² coefficient of the Hall conductivity. It is reminiscent of the Hoyos--Son relation in the Galilean invariant systems, which can be recovered in the limit of large filling factor N.

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