Quantized energy pumping in quasi-periodically driven Nitrogen Vacancy Centres

ORAL

Abstract

A spin strongly driven by two incommensurate tones can exhibit a topological class of dynamics in which it (i) pumps energy from one drive to the other at a quantized average rate, in precise relationship with the quantum Hall effect, and (ii) exhibits an oscillatory response to a perturbation to the phases of the drives. We show these remarkable signatures to be realized in experiments in Nitrogen Vacancy centres. We further provide an experimental demonstration of half-integer quantization of various responses at the transition between the topological and trivial classes of dynamics.

*This work was supported by NSF DMR- 1752759 and the Sloan Foundation through the Sloan Research Fellowship.

Presenters

  • Anushya Chandran

    • Boston Univ
    • Boston University

Authors

  • Anushya Chandran

    • Boston Univ
    • Boston University
  • Ivar Martin

    • Material Science Division, Argonne National Laboratory
    • Argonne National Laboratory
    • Argonne Natl Lab
  • Philip Crowley

    • Boston Univ