On-chip Non-Hermitian Cavity Quantum Electrodynamics

Fuente: arXiv
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Main Authors: Chen, Yan, Wang, Xudong, Li, Jin, Su, Rongbin, Xiong, Kaili, Li, Xueshi, Yu, Ying, Zhang, Tao, Wu, Kexun, Li, Xiao, Wang, Jiawei, Zhang, Jiaxiang, Liu, Jin, Jiang, Tian
Format: Preprint
Published: 2025
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author Chen, Yan
Wang, Xudong
Li, Jin
Su, Rongbin
Xiong, Kaili
Li, Xueshi
Yu, Ying
Zhang, Tao
Wu, Kexun
Li, Xiao
Wang, Jiawei
Zhang, Jiaxiang
Liu, Jin
Jiang, Tian
author_facet Chen, Yan
Wang, Xudong
Li, Jin
Su, Rongbin
Xiong, Kaili
Li, Xueshi
Yu, Ying
Zhang, Tao
Wu, Kexun
Li, Xiao
Wang, Jiawei
Zhang, Jiaxiang
Liu, Jin
Jiang, Tian
contents Exceptional points (EPs) promise revolutionary control over quantum light-matter interactions. Here, we experimentally demonstrate flexible and reversible engineering of quantum vacuum fluctuation in an integrated microcavity supporting chiral Eps. We develop a hybrid lithium niobate (LN)-GaAs quantum photonic platform, seamlessly combining high-quality quantum emitters, a low-loss photonic circuit, efficient electro-optic (EO) effect, and local strain actuator in a single device. Chiral EPs are implemented by dynamically tuning the coupling between the modes associated with a micro-ring resonator, resulting in anomalous spontaneous emission dynamic with a 7-fold modulation of the lifetime (120 ps to 850 ps). Meanwhile, we reshape single-photon spectra via cavity local density of states (LDOS) engineering and generate non-Lorentzian spectral profiles: squared-Lorentzian, Fano-like, and EP-induced transparency (EPIT), a suppression of emission at zero detuning. This work unveils exotic cavity quantum electrodynamics (cQED) effects unique to EPs and establishes a universal paradigm for non-Hermitian quantum photonics.
format Preprint
id arxiv_https___arxiv_org_abs_2505_05490
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle On-chip Non-Hermitian Cavity Quantum Electrodynamics
Chen, Yan
Wang, Xudong
Li, Jin
Su, Rongbin
Xiong, Kaili
Li, Xueshi
Yu, Ying
Zhang, Tao
Wu, Kexun
Li, Xiao
Wang, Jiawei
Zhang, Jiaxiang
Liu, Jin
Jiang, Tian
Optics
Quantum Physics
Exceptional points (EPs) promise revolutionary control over quantum light-matter interactions. Here, we experimentally demonstrate flexible and reversible engineering of quantum vacuum fluctuation in an integrated microcavity supporting chiral Eps. We develop a hybrid lithium niobate (LN)-GaAs quantum photonic platform, seamlessly combining high-quality quantum emitters, a low-loss photonic circuit, efficient electro-optic (EO) effect, and local strain actuator in a single device. Chiral EPs are implemented by dynamically tuning the coupling between the modes associated with a micro-ring resonator, resulting in anomalous spontaneous emission dynamic with a 7-fold modulation of the lifetime (120 ps to 850 ps). Meanwhile, we reshape single-photon spectra via cavity local density of states (LDOS) engineering and generate non-Lorentzian spectral profiles: squared-Lorentzian, Fano-like, and EP-induced transparency (EPIT), a suppression of emission at zero detuning. This work unveils exotic cavity quantum electrodynamics (cQED) effects unique to EPs and establishes a universal paradigm for non-Hermitian quantum photonics.
title On-chip Non-Hermitian Cavity Quantum Electrodynamics
topic Optics
Quantum Physics
url https://arxiv.org/abs/2505.05490