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基于萨格纳克干涉仪中二阶非线性过程的级联产生离散频率-bin 纠缠。

Discrete frequency-bin entanglement generation via cascaded second-order nonlinear processes in Sagnac interferometer.

出版信息

Opt Lett. 2023 Jun 1;48(11):2917-2920. doi: 10.1364/OL.489656.

Abstract

Discrete frequency-bin entanglement is an essential resource for applications in quantum information processing. In this Letter, we propose and demonstrate a scheme to generate discrete frequency-bin entanglement with a single piece of periodically poled lithium niobate waveguide in a modified Sagnac interferometer. Correlated two-photon states in both directions of the Sagnac interferometer are generated through cascaded second-order optical nonlinear processes. A relative phase difference between the two states is introduced by changing the polarization state of pump light, thus manipulating the two-photon state at the output of the Sagnac interferometer. The generated two-photon state is sent into a fiber polarization splitter, and then a pure discrete frequency-bin entangled two-photon state is obtained by setting the pump light. The frequency entanglement property is measured by a spatial quantum beating with a visibility of 96.0±6.1. The density matrix is further obtained with a fidelity of 98.0±3.0 to the ideal state. Our demonstration provides a promising method for the generation of pure discrete frequency-bin entanglement at the telecom band, which is desired in quantum photonics.

摘要

离散频域纠缠是量子信息处理应用的基本资源。在这篇文章中,我们提出并演示了一种利用单块周期性极化铌酸锂波导在改进的萨格纳克干涉仪中产生离散频域纠缠的方案。通过级联二阶光学非线性过程,在萨格纳克干涉仪的两个方向上产生关联的双光子态。通过改变泵浦光的偏振态引入两个态之间的相对相位差,从而在萨格纳克干涉仪的输出端操纵双光子态。生成的双光子态被送入光纤偏振分束器,然后通过设置泵浦光获得纯离散频域纠缠双光子态。通过空间量子拍频测量频率纠缠特性,其可见度为 96.0±6.1。进一步通过与理想态的保真度为 98.0±3.0 获得密度矩阵。我们的演示为在电信波段产生纯离散频域纠缠提供了一种很有前途的方法,这是量子光子学中所期望的。

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