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有损波导中的光子对产生:传播损耗对有损波导中光子对产生的影响。

Photon-pair generation in a lossy waveguide: Propagation loss effects on photon-pair generation in a lossy waveguide.

作者信息

Shin Woncheol, Park Kyungdeuk, Kim Hyeongpin, Lee Dongjin, Kwon Kiwon, Shin Heedeuk

机构信息

Department of Physics, Pohang University of Science and Technology (POSTECH), Pohang, 37673, Korea.

出版信息

Nanophotonics. 2023 Jan 10;12(3):531-538. doi: 10.1515/nanoph-2022-0582. eCollection 2023 Feb.

Abstract

An on-chip quantum light source based on spontaneous four-wave mixing is an essential element for developing quantum photonic integrated circuit technology, which has the advantage of no connection loss owing to the integration of the source into photonic circuits. The waveguide-based quantum light source inevitably causes propagation loss owing to imperfections in the fabrication process, but the propagation loss effects on photon-pair generation have not been extensively studied. In this study, propagation loss effects were examined using theoretical and experimental methods. In theory, the performance of quantum light sources, such as brightness, heralding efficiency, and coincidence-to-accidental ratio, strongly depend on propagation loss. We fabricate several waveguides with a moderate propagation loss of 2.2 dB/cm to investigate the loss dependence and ascertain that the brightness, heralding efficiency, and coincidence-to-accident ratio strongly correlate with the length of the optical waveguide. The maximum coincidence-count brightness occurred at an optimization length of 1/, where is the absorption coefficient. In contrast, the single-count brightness shows slightly different waveguide length dependence owing to loss-induced one-photon states. We expect that the results obtained in this study will greatly assist in determining the proper waveguide length for photon-pair generation according to the source's application fields. The results will be helpful in the development of a quantum light source suitable for practical and quantum optical integrated circuits and will lead to the development of high-fidelity quantum technologies.

摘要

基于自发四波混频的片上量子光源是发展量子光子集成电路技术的关键要素,该技术具有因将光源集成到光子电路中而无连接损耗的优势。基于波导的量子光源由于制造过程中的缺陷不可避免地会导致传播损耗,但传播损耗对光子对产生的影响尚未得到广泛研究。在本研究中,使用理论和实验方法研究了传播损耗的影响。理论上,量子光源的性能,如亮度、预示效率和符合与偶然比,强烈依赖于传播损耗。我们制造了几条具有2.2 dB/cm适度传播损耗的波导,以研究损耗依赖性,并确定亮度、预示效率和符合与偶然比与光波导的长度密切相关。最大符合计数亮度出现在1/的优化长度处,其中是吸收系数。相比之下,由于损耗诱导的单光子态,单计数亮度显示出略有不同的波导长度依赖性。我们预计,本研究中获得的结果将极大地有助于根据光源的应用领域确定用于光子对产生的合适波导长度。这些结果将有助于开发适用于实际和量子光学集成电路的量子光源,并将推动高保真量子技术的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96d7/11614326/28f8d6f34fcf/j_nanoph-2022-0582_fig_001.jpg

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