Mixed axial-torsional anomaly in Weyl semimetals

ORAL

Abstract

We show that Weyl semimetals exhibit a mixed axial-torsional anomaly in the presence of axial torsion, a concept exclusive of these materials with no known natural fundamental interpretation in terms of the geometry of spacetime. This anomaly implies a nonconservation of the axial current---the difference in current of left- and right-handed chiral fermions---when the torsion of the spacetime in which the Weyl fermions move couples with opposite sign to different chiralities. The anomaly is activated by driving transverse sound waves through a Weyl semimetal with a spatially varying tilted dispersion, which can be engineered by applying strain. This leads to sizable alternating current in presence of a magnetic field that provides a clear-cut experimental signature of our predictions.

Presenters

  • Jens Bardarson

    Department of Physics, KTH Royal Institute of Technology, Royal Institute of Technology, Physics, KTH Royal Insitute of Technology

Authors

  • Yago Ferreiros

    Royal Institute of Technology

  • Yaron Kedem

    Stockholm University

  • Emil J Bergholtz

    Stockholm University

  • Jens Bardarson

    Department of Physics, KTH Royal Institute of Technology, Royal Institute of Technology, Physics, KTH Royal Insitute of Technology