Linearly Driven Non-Hermitian Quantum Systems

ORAL

Abstract

Many-body generalization of the Landau-Zener models, known as multi-state Landau-Zener models have been extensively investigated in Hermitian physics with applications in various physical systems. In this work, we extend investigations to the non-Hermitian regime, where the non-Hermiticity is introduced through anti-Hermitian couplings. We provide a framework on how to solve non-Hermitian multi-state Landau-Zener models with illustrative examples of 4-level and 6-level quantum systems. Moreover, we discuss the potential application of the non-Hermitian multi-state Landau-Zener model in coupled optical waveguides.

*This work was supported by the U.S. Department of Energy through the LANL/LDRD Program and the Center for Non-Linear Studies. LA-UR-22-31076

Publication: Linearly Driven Non-Hermitian Quantum Systems, in preparation.

Presenters

  • Julia Cen

    • Los Alamos National Laboratory

Authors

  • Julia Cen

    • Los Alamos National Laboratory
  • Rajesh Malla

    • Brookhaven National Laboratory
    • Los Alamos National Laboratory
  • Wilton Kort-Kamp

    • Los Alamos National Laboratory
  • Avadh B Saxena

    • Los Alamos National Laboratory