arXiv · 1405.0491
Weyl fermions induced Magnon electrodynamics in Weyl semimetal
Abstract
Weyl fermions, which are fermions with definite chiralities, can give rise to anomalous breaking of the symmetry of the physical system which they are a part of. In their (3+1)-dimensional realizations in condensed matter systems, i.e., the so-called Weyl semimetals, this anomaly gives rise to topological electromagnetic response of magnetic fluctuations, which takes the form of non-local interaction between magnetic fluctuations and electromagnetic fields. We study the physical consequences of this non-local interaction, including electric field assisted magnetization dynamics, an extra gapless magnon dispersion, and polariton behaviors that feature "sibling" bands in small magnetic fields.
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Jimmy A. Hutasoit, Jiadong Zang, Radu Roiban, Chao-Xing Liu. 2014-05-02. Weyl fermions induced Magnon electrodynamics in Weyl semimetal. https://doi.org/10.1103/physrevb.90.134409
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