Realization of geometric phase topology induced by multiple exceptional points

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Hauptverfasser: Ryu, Jung-Wan, Han, Jae-Ho, Yi, Chang-Hwan
Format: Preprint
Veröffentlicht: 2024
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author Ryu, Jung-Wan
Han, Jae-Ho
Yi, Chang-Hwan
author_facet Ryu, Jung-Wan
Han, Jae-Ho
Yi, Chang-Hwan
contents Non-Hermitian systems have Riemann surface structures of complex eigenvalues that admit singularities known as exceptional points. Combining with geometric phases of eigenstates gives rise to unique properties of non-Hermitian systems, and their classifications have been studied recently. However, the physical realizations of classes of the classifications have been relatively limited because a small number of modes and exceptional points are involved. In this work, we show in microcavities that all five classes [J.-W. Ryu, et al., Commun. Phys. 7, 109 (2024)] of three modes can emerge with three exceptional points. In demonstrations, we identified various combinations of exceptional points within a two-dimensional parameter space of a single microcavity and defined five distinct encircling loops based on three selected exceptional points. According to the classification, these loops facilitate different mode exchanges and the acquisition of additional geometric phases during the adiabatic encircling of exceptional points. Our results provide a broad description of the geometric phases-associated topology induced by multiple exceptional points in realistic physical systems.
format Preprint
id arxiv_https___arxiv_org_abs_2408_16302
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Realization of geometric phase topology induced by multiple exceptional points
Ryu, Jung-Wan
Han, Jae-Ho
Yi, Chang-Hwan
Optics
Quantum Physics
Non-Hermitian systems have Riemann surface structures of complex eigenvalues that admit singularities known as exceptional points. Combining with geometric phases of eigenstates gives rise to unique properties of non-Hermitian systems, and their classifications have been studied recently. However, the physical realizations of classes of the classifications have been relatively limited because a small number of modes and exceptional points are involved. In this work, we show in microcavities that all five classes [J.-W. Ryu, et al., Commun. Phys. 7, 109 (2024)] of three modes can emerge with three exceptional points. In demonstrations, we identified various combinations of exceptional points within a two-dimensional parameter space of a single microcavity and defined five distinct encircling loops based on three selected exceptional points. According to the classification, these loops facilitate different mode exchanges and the acquisition of additional geometric phases during the adiabatic encircling of exceptional points. Our results provide a broad description of the geometric phases-associated topology induced by multiple exceptional points in realistic physical systems.
title Realization of geometric phase topology induced by multiple exceptional points
topic Optics
Quantum Physics
url https://arxiv.org/abs/2408.16302