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Chiral kinetic theory from Landau level basis

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arxiv 1909.11514 v2 pith:53ANO47F submitted 2019-09-25 nucl-th cond-mat.mes-hallhep-ph

classification nucl-thcond-mat.mes-hallhep-ph
keywords conductivityfieldchiralkineticlandaulevelmagnetictheory
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We derive a chiral kinetic theory with Landau level basis, which is valid for slow-varying magnetic field with arbitrary magnitude. We apply the new chiral kinetic theory to calculate the electric conductivity transverse to the magnetic field in a magnetized QED and QCD plasma. Under the lowest Landau level approximation and relaxation time approximation, we find the transverse conductivity approaches a constant in the large magnetic field limit and is inversely proportional to the relaxation time. We also obtain a frequency-dependent transverse conductivity in response to a time-dependent electric field. We find a high frequency enhancement in this conductivity.

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  1. Influence of interactions on the chiral effect in $1D$ Dirac semimetal

    cond-mat.str-el 2026-08 conditional novelty 4.0 of 10

    For the interacting SSH model, QMC data show that the low-frequency response of chiral density to an electric field remains equal to the electrical conductivity, so local Hubbard interactions do not renormalize the 1D...

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