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铌酸锂纳米光子学中2μm的超短脉冲双光子源

Ultrashort pulse biphoton source in lithium niobate nanophotonics at 2 μm.

作者信息

Williams James, Nehra Rajveer, Sendonaris Elina, Ledezma Luis, Gray Robert M, Sekine Ryoto, Marandi Alireza

机构信息

Department of Electrical Engineering, California Institute of Technology, Pasadena, CA 91125, USA.

Department of Electrical and Computer Engineering, University of Massachusetts Amherst, Amherst, MA, 01003, USA.

出版信息

Nanophotonics. 2024 Jun 13;13(18):3535-3544. doi: 10.1515/nanoph-2024-0054. eCollection 2024 Aug.

Abstract

Photonics offers unique capabilities for quantum information processing (QIP) such as room-temperature operation, the scalability of nanophotonics, and access to ultrabroad bandwidths and consequently ultrafast operation. Ultrashort pulse sources of quantum states in nanophotonics are an important building block for achieving scalable ultrafast QIP; however, their demonstrations so far have been sparse. Here, we demonstrate a femtosecond biphoton source in dispersion-engineered periodically poled lithium niobate nanophotonics. We measure 17 THz of bandwidth for the source centered at 2.09 µm, corresponding to a few optical cycles, with a brightness of 8.8 GHz/mW. Our results open new paths toward realization of ultrafast nanophotonic QIP.

摘要

光子学为量子信息处理(QIP)提供了独特的能力,如室温操作、纳米光子学的可扩展性,以及获得超宽带宽并因此实现超快操作。纳米光子学中的量子态超短脉冲源是实现可扩展超快量子信息处理的重要组成部分;然而,到目前为止它们的演示还很少。在这里,我们展示了一种在色散工程周期性极化铌酸锂纳米光子学中的飞秒双光子源。我们测量到该源以2.09微米为中心的带宽为17太赫兹,对应几个光学周期,亮度为8.8吉赫兹/毫瓦。我们的结果为实现超快纳米光子量子信息处理开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f8a/11501393/7dbcf506b6f6/j_nanoph-2024-0054_fig_001.jpg

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