Unidirectional lasing via vacuum induced coherent in defective atomic lattice

Fuente: arXiv
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Main Authors: Zheng, Xinfu, Peng, Chen, Chen, Duanfu, Zheng, Yiting, Zhang, Hanxiao, Yan, Dong, Wu, Jinhui, Yang, Hong
Format: Preprint
Published: 2025
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author Zheng, Xinfu
Peng, Chen
Chen, Duanfu
Zheng, Yiting
Zhang, Hanxiao
Yan, Dong
Wu, Jinhui
Yang, Hong
author_facet Zheng, Xinfu
Peng, Chen
Chen, Duanfu
Zheng, Yiting
Zhang, Hanxiao
Yan, Dong
Wu, Jinhui
Yang, Hong
contents We skillfully utilized vacuum induced coherence to amplify the probe light, and then successfully achieved both nonreciprocal reflection and lasing oscillation in a single physical system by leveraging the distributed feedback and spatial symmetry breaking effect of the one-dimensional defective atomic lattice. This innovative scheme for realizing unidirectional reflection lasing (URL) is based on both non-Hermitian degeneracy and spectral singularity (NHDSS, means $λ_{+}^{-1}\simeqλ_{-}^{-1}\rightarrow0$). Therefore, we analyze the modulation of parameters such as the lattice structure and external optical fields in this system to find NHDSS point, and further verified the conditions for its occurrence by solving the transcendental equation of susceptibility satisfying the NHDSS point, as well as analyzed its physical essence. Our mechanism is not only beneficial for the integration of photonic devices in quantum networks, but also greatly improves the efficiency of optical information transmission.
format Preprint
id arxiv_https___arxiv_org_abs_2508_16056
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Unidirectional lasing via vacuum induced coherent in defective atomic lattice
Zheng, Xinfu
Peng, Chen
Chen, Duanfu
Zheng, Yiting
Zhang, Hanxiao
Yan, Dong
Wu, Jinhui
Yang, Hong
Optics
We skillfully utilized vacuum induced coherence to amplify the probe light, and then successfully achieved both nonreciprocal reflection and lasing oscillation in a single physical system by leveraging the distributed feedback and spatial symmetry breaking effect of the one-dimensional defective atomic lattice. This innovative scheme for realizing unidirectional reflection lasing (URL) is based on both non-Hermitian degeneracy and spectral singularity (NHDSS, means $λ_{+}^{-1}\simeqλ_{-}^{-1}\rightarrow0$). Therefore, we analyze the modulation of parameters such as the lattice structure and external optical fields in this system to find NHDSS point, and further verified the conditions for its occurrence by solving the transcendental equation of susceptibility satisfying the NHDSS point, as well as analyzed its physical essence. Our mechanism is not only beneficial for the integration of photonic devices in quantum networks, but also greatly improves the efficiency of optical information transmission.
title Unidirectional lasing via vacuum induced coherent in defective atomic lattice
topic Optics
url https://arxiv.org/abs/2508.16056