Dynamical Axion Field in a Magnetic Topological Insulator Superlattice

ORAL

Abstract

We propose that the dynamical axion field can be realized in a magnetic topological insulator superlattice or a topological paramagnetic insulator. The magnetic fluctuations of these systems produce a pseudoscalar field which has an axionic coupling to the electromagnetic field, and thus it gives a condensed-matter realization of the axion electrodynamics. Compared to the previously proposed dynamical axion materials where a long range antiferromagnetic order is required, the systems proposed here have the advantage that only an uniform magnetization or a paramagnetic state is needed for the dynamic axion. We further propose several experiments to detect such a dynamical axion field.

*This work is supported by the US Department of Energy, Oce of Basic Energy Sciences, Division of Materials Sciences and Engineering, under Contract No. DE-AC02-76SF00515.

Authors

  • Jing Wang

    • Department of Physics, Stanford University
    • Stanford University
  • Biao Lian

    • Department of Physics, Stanford University
    • Stanford University
  • Shou-Cheng Zhang

    • Department of Physics, Stanford University
    • stanford university
    • Stanford University
    • Stanford Univ