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Consistent hydrodynamic theory of chiral electrons in Weyl semimetals

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arxiv 1712.01289 v3 pith:3MHQB7D2 submitted 2017-12-04 cond-mat.str-el hep-phnucl-th

Consistent hydrodynamic theory of chiral electrons in Weyl semimetals

classification cond-mat.str-el hep-phnucl-th
keywords weylcontributionshydrodynamicsemimetalsanomalouschern-simonschiralconsistent
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The complete set of Maxwell's and hydrodynamic equations for the chiral electrons in Weyl semimetals is presented. The formulation of the Euler equation takes into account the explicit breaking of the Galilean invariance by the ion lattice. It is shown that the Chern-Simons (or Bardeen-Zumino) contributions should be added to the electric current and charge densities in Maxwell's equations that provide the information on the separation of Weyl nodes in energy and momentum. On the other hand, these topological contributions do not directly affect the Euler equation and the energy conservation relation for the electron fluid. By making use of the proposed consistent hydrodynamic framework, we show that the Chern-Simons contributions strongly modify the dispersion relations of collective modes in Weyl semimetals. This is reflected, in particular, in the existence of distinctive anomalous Hall waves, which are sustained by the local anomalous Hall currents.

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