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用于高效生成纠缠光子对的薄膜铌酸锂波导中的模态相位匹配

Modal phase-matching in thin-film lithium niobate waveguides for efficient generation of entangled photon pairs.

作者信息

Liu Jiacheng, Duan Jiachen, Zhu Pingyu, Xia Gongyu, Hong Qilin, Zhang Kaikai, Zhu Zhihong, Qin Shiqiao, Xu Ping

出版信息

Opt Express. 2024 Nov 4;32(23):40629-40639. doi: 10.1364/OE.539105.

Abstract

Thin-film lithium niobate (TFLN) waveguides have emerged as a pivotal platform for on-chip spontaneous parametric down-conversion (SPDC), serving as a crucible for the generation of entangled photon pairs. The periodic poling of TFLN, while capable of generating high-efficiency SPDC, demands intricate fabrication processes that can be onerous in terms of scalability and manufacturability. In this work, we introduce a novel approach to the generation of entangled photon pairs via SPDC within TFLN waveguides, harnessing the principles of modal phase-matching (MPM). To address the challenge of efficiently exciting pump light typically in a higher-order mode, we have engineered a mode converter that couples two asymmetrically dimensioned waveguides. This converter adeptly transforms the fundamental mode into a higher-order mode, demonstrating a conversion loss of 1.55 dB at 785 nm with a 3 dB bandwidth exceeding 30 nm. Subsequently, we have showcased the device's capabilities by characterizing the pair generation rate (PGR), coincidences-to-accidentals ratio (CAR), and spectral profile of the entangled photon source. Our findings present a simplified and versatile method for the on-chip generation of entangled photon sources, which may pave the way for the application in the realms of quantum information processing and communication technologies.

摘要

薄膜铌酸锂(TFLN)波导已成为片上自发参量下转换(SPDC)的关键平台,是产生纠缠光子对的关键所在。虽然TFLN的周期性极化能够产生高效的SPDC,但需要复杂的制造工艺,在可扩展性和可制造性方面可能很艰巨。在这项工作中,我们引入了一种通过TFLN波导内的SPDC产生纠缠光子对的新方法,利用模式相位匹配(MPM)原理。为了应对通常在高阶模式下有效激发泵浦光的挑战,我们设计了一种模式转换器,该转换器耦合两个尺寸不对称的波导。该转换器巧妙地将基模转换为高阶模式,在785 nm处显示出1.55 dB的转换损耗,3 dB带宽超过30 nm。随后,我们通过表征纠缠光子源的对生成率(PGR)、符合与偶然比(CAR)和光谱轮廓,展示了该器件的性能。我们的研究结果提出了一种用于片上生成纠缠光子源的简化且通用的方法,这可能为量子信息处理和通信技术领域中的应用铺平道路。

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