Dynamical encircling of multiple exceptional points in anti-PT symmetry system

Author:

Wang Lei1,Liu Ni1,Wu Chaohua2ORCID,Chen Gang12

Affiliation:

1. Shanxi University

2. Zhengzhou University

Abstract

Exceptional points (EPs) in non-Hermitian systems have turned out to be at the origin of many intriguing effects with no counterparts in Hermitian cases. A typically interesting behavior is the chiral mode switching by dynamically winding the EP. Most encircling protocols focus on the two-state or parity-time (PT) symmetry systems. Here, we propose and investigate the dynamical encircling of multiple EPs in an anti-PT-symmetric system, which is constructed based on a one-dimensional lattice with staggered lossy modulation. We reveal that dynamically encircling the multiple EPs results in the chiral dynamics via multiple non-Hermiticity-induced nonadiabatic transitions, where the output state is always on the lowest-loss energy sheet. Compared with the PT-symmetric systems that require complicated variation of the gain/loss rate or on-site potentials, our system only requires modulations of the couplings which can be readily realized in various experimental platforms. Our scheme provides a route to study non-Hermitian physics by engineering the EPs and implement novel photonic devices with unconventional functions.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Cross-disciplinary Innovative Research Group Project of Henan Province

Publisher

Optica Publishing Group

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