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  • Letter

Chiral anomaly in noncentrosymmetric systems induced by spin-orbit coupling

Suik Cheon1, Gil Young Cho1,2,3, Ki-Seok Kim1,3, and Hyun-Woo Lee1,*

  • 1Department of Physics, Pohang University of Science and Technology, Pohang 37673, Korea
  • 2Center for Artificial Low Dimensional Electronic Systems, Institute for Basic Science (IBS), Pohang 37673, Korea
  • 3Asia Pacific Center for Theoretical Physics, Pohang 37673, Korea

  • *hwl@postech.ac.kr

Phys. Rev. B 105, L180303 – Published 23 May, 2022

DOI: https://doi.org/10.1103/PhysRevB.105.L180303

Abstract

The chiral anomaly may be realized in condensed matter systems with pairs of Weyl points. Here we show that the chiral anomaly can be realized in diverse noncentrosymmetric systems even without Weyl point pairs when spin-orbit coupling (SOC) induces nonzero Berry curvature flux through Fermi surfaces (FS). This motivates the condensed matter chiral anomaly to be interpreted as a FS property rather than a Weyl point property. The SOC-induced anomaly reproduces the well-known charge transport properties of the chiral anomaly such as the negative longitudinal magnetoresistance and the planar Hall effect in Weyl semimetals. Since it is of SOC origin, it also affects the spin transport and gives rise to anomaly induced longitudinal spin currents and the magnetic spin Hall effect, which are absent in conventional Weyl semimetals.

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