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Quantum Dirac fermions in half space and their interaction with electromagnetic field

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arxiv 1906.06704 v3 pith:VM4V73AB submitted 2019-06-16 hep-th cond-mat.mes-hallmath-phmath.MP

classification hep-thcond-mat.mes-hallmath-phmath.MP
keywords diracfieldactionhalfpolarizationschemespacetensor
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abstract

We study the polarization tensor of a Dirac field in $(3+1)$ dimensions confined to a half space -- a problem motivated by applications to the condensed matter physics, and to Topological Insulators in particular. Although the Pauli-Villars regularization scheme has a number of advantages, like explicit gauge invariance and decoupling of heavy modes, it is not applicable on manifolds with boundaries. Here, we modify this scheme by giving an axial mass to the regulators and to the physical field. We compute the renormalized polarization tensor in coordinate representation. We discuss then the induced Chern-Simons type action on the boundary and compare it to the effective action of a $(2+1)$ dimensional Dirac fermion.

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Cited by 1 Pith paper

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  1. Fractional Fermion Number and Hall Conductivity of Domain Walls

    hep-th 2019-08 conditional novelty 6.0 of 10

    Fermion number on a domain wall equals -(e/4π²) times the chiral angle difference times the magnetic flux, giving Chern-Simons level -Δθ/2π.

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