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Autores principales: Zhang, He-bin, Tang, Yuanjiang, Liu, Yong-Chun
Formato: Preprint
Publicado: 2024
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Acceso en línea:https://arxiv.org/abs/2412.09873
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author Zhang, He-bin
Tang, Yuanjiang
Liu, Yong-Chun
author_facet Zhang, He-bin
Tang, Yuanjiang
Liu, Yong-Chun
contents Photon correlation is at the heart of quantum optics and has important applications in quantum technologies. Here we propose a universally applicable mechanism that can generate the superbunching light with ultrastrong second-order and higher-order correlations hitherto unreachable. This mechanism arises from the combined effect of electron shelving and time integral of fluorescence based on a cascaded quantum system comprising an emitter and a filter or a cavity QED system, and has high experimental feasibility according to current experimental techniques. Besides, both the correlation degrees and the frequency of the light can be flexibly varied over broad ranges. Both the research and technological applications on strong correlations can be extensively facilitated due to this readily accessible and manipulated mechanism for generating photon correlation.
format Preprint
id arxiv_https___arxiv_org_abs_2412_09873
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Ultrastrong photon superbunching from electron shelving and time integral
Zhang, He-bin
Tang, Yuanjiang
Liu, Yong-Chun
Quantum Physics
Photon correlation is at the heart of quantum optics and has important applications in quantum technologies. Here we propose a universally applicable mechanism that can generate the superbunching light with ultrastrong second-order and higher-order correlations hitherto unreachable. This mechanism arises from the combined effect of electron shelving and time integral of fluorescence based on a cascaded quantum system comprising an emitter and a filter or a cavity QED system, and has high experimental feasibility according to current experimental techniques. Besides, both the correlation degrees and the frequency of the light can be flexibly varied over broad ranges. Both the research and technological applications on strong correlations can be extensively facilitated due to this readily accessible and manipulated mechanism for generating photon correlation.
title Ultrastrong photon superbunching from electron shelving and time integral
topic Quantum Physics
url https://arxiv.org/abs/2412.09873