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弱相干光的双光子干涉

Two-photon interferences of weak coherent lights.

作者信息

Kim Heonoh, Kwon Osung, Moon Han Seb

机构信息

Department of Physics, Pusan National University, Geumjeong-Gu, Busan, 46241, South Korea.

Affiliated Institute of Electronics and Telecommunications Research Institute, Daejeon, 34044, South Korea.

出版信息

Sci Rep. 2021 Oct 15;11(1):20555. doi: 10.1038/s41598-021-99804-w.

Abstract

Multiphoton interference is an important phenomenon in modern quantum mechanics and experimental quantum optics, and it is fundamental for the development of quantum information science and technologies. Over the last three decades, several theoretical and experimental studies have been performed to understand the essential principles underlying such interference and to explore potential applications. Recently, the two-photon interference (TPI) of phase-randomized weak coherent states has played a key role in the realization of long-distance quantum communication based on the use of classical light sources. In this context, we investigated TPI experiments with weak coherent pulses at the single-photon level and quantitatively analyzed the results in terms of the single- and coincidence-counting rates and one- and two-photon interference-fringe shapes. We experimentally examined the Hong-Ou-Mandel-type TPI of phase-randomized weak coherent pulses to compare the TPI effect with that of correlated photons. Further experiments were also performed with two temporally- and spatially separated weak coherent pulses. Although the observed interference results, including the results of visibility and fringe shape, can be suitably explained by classical intensity correlation, the physics underlying the TPI effect needs to be interpreted as the interference between the two-photon states at the single-photon level within the utilized interferometer. The results of this study can provide a more comprehensive understanding of the TPI of coherent light at the single-photon level.

摘要

多光子干涉是现代量子力学和实验量子光学中的一个重要现象,对于量子信息科学与技术的发展至关重要。在过去三十年中,人们进行了多项理论和实验研究,以理解这种干涉背后的基本原理,并探索其潜在应用。最近,相位随机化弱相干态的双光子干涉(TPI)在基于经典光源实现长距离量子通信中发挥了关键作用。在此背景下,我们在单光子水平上用弱相干脉冲开展了TPI实验,并根据单计数率和符合计数率以及单光子和双光子干涉条纹形状对结果进行了定量分析。我们通过实验研究了相位随机化弱相干脉冲的Hong-Ou-Mandel型TPI,以将TPI效应与关联光子的效应进行比较。还对两个在时间和空间上分离的弱相干脉冲进行了进一步实验。尽管包括可见度和条纹形状结果在内的观测干涉结果可以用经典强度关联得到恰当解释,但TPI效应背后的物理机制需要在所用干涉仪内单光子水平上解释为双光子态之间的干涉。本研究结果可以更全面地理解单光子水平上相干光的TPI。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f61c/8519967/8f61f37746f8/41598_2021_99804_Fig1_HTML.jpg

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