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April 10, 2009Physical Review Letters968 citationsOpen Access

Magnetoelectric Polarizability and Axion Electrodynamics in Crystalline Insulators

AEAndrew M. EssinJMJoel E. MooreDVDavid Vanderbilt

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Abstract

The orbital motion of electrons in a three-dimensional solid can generate a pseudoscalar magnetoelectric coupling theta, a fact we derive for the single-particle case using a recent theory of polarization in weakly inhomogeneous materials. This polarizability theta is the same parameter that appears in the "axion electrodynamics" Lagrangian DeltaL₄₌= (thetae;2/2pih) E. B, which is known to describe the unusual magnetoelectric properties of the three-dimensional topological insulator (theta=pi). We compute theta for a simple model that accesses the topological insulator and discuss its connection to the surface Hall conductivity. The orbital magnetoelectric polarizability can be generalized to the many-particle wave function and defines the 3D topological insulator, like the integer quantum Hall effect, in terms of a topological ground-state response function.

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Essin et al. (2009) studied this question.

synapsesocial.com/papers/69d82395617ce96c42ae3190https://doi.org/10.1103/physrevlett.102.146805
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