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Main Authors: Fang, Liang, Bai, Kai, Guo, Cheng, Liu, Tian-Rui, Li, Jia-Zheng, Xiao, Meng
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2408.03751
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author Fang, Liang
Bai, Kai
Guo, Cheng
Liu, Tian-Rui
Li, Jia-Zheng
Xiao, Meng
author_facet Fang, Liang
Bai, Kai
Guo, Cheng
Liu, Tian-Rui
Li, Jia-Zheng
Xiao, Meng
contents Non-Hermitian systems and their topological singularities, such as exceptional points (EPs), lines, and surfaces, have recently attracted intense interest. The investigation of these exceptional constituents has led to fruitful applications. The responsivity of the eigenvalue diverges at EPs, and chiral state transfer occurs when encircling an EP. Traditionally, it was believed that these exceptional features were unique to non-Hermitian systems requiring gain, loss, or nonreciprocal hopping. Here, we show that these exceptional features are also present in nonlinear Hermitian systems. We consider two coupled resonators with Kerr nonlinearity in one resonator, and no non-Hermitian terms. We identify EP-like points (ELPs) on the eigenspectra where the critical behaviors are the same as those of typical EPs. Additionally, this nonlinear Hermitian system can be mapped to linear non-Hermitian systems, with ELPs corresponding to EPs. We also demonstrate that encirclement around an ELP in the parameter space leads to unique chiral state transfer behavior.
format Preprint
id arxiv_https___arxiv_org_abs_2408_03751
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Exceptional features in nonlinear Hermitian systems
Fang, Liang
Bai, Kai
Guo, Cheng
Liu, Tian-Rui
Li, Jia-Zheng
Xiao, Meng
Optics
Non-Hermitian systems and their topological singularities, such as exceptional points (EPs), lines, and surfaces, have recently attracted intense interest. The investigation of these exceptional constituents has led to fruitful applications. The responsivity of the eigenvalue diverges at EPs, and chiral state transfer occurs when encircling an EP. Traditionally, it was believed that these exceptional features were unique to non-Hermitian systems requiring gain, loss, or nonreciprocal hopping. Here, we show that these exceptional features are also present in nonlinear Hermitian systems. We consider two coupled resonators with Kerr nonlinearity in one resonator, and no non-Hermitian terms. We identify EP-like points (ELPs) on the eigenspectra where the critical behaviors are the same as those of typical EPs. Additionally, this nonlinear Hermitian system can be mapped to linear non-Hermitian systems, with ELPs corresponding to EPs. We also demonstrate that encirclement around an ELP in the parameter space leads to unique chiral state transfer behavior.
title Exceptional features in nonlinear Hermitian systems
topic Optics
url https://arxiv.org/abs/2408.03751