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Quantum Hall effective action for anisotropic Dirac semi-metal

Published 25 Jun 2020 in cond-mat.str-el and hep-th | (2006.14595v1)

Abstract: We present a study of Hall transport in semi-Dirac critical phases. The construction is based on a covariant formulation of relativistic systems with spatial anisotropy. Geometric data together with external electromagnetic fields is used to devise an expansion procedure that leads to a low-energy effective action consistent with the discrete $PT$ symmetry that we impose. We use the action to discuss terms contributing to the Hall transport and extract the coefficients. We also discuss the associated scaling symmetry.

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