Xin C J, Mishra Jatadhari, Chen Changchen, Zhu Di, Shams-Ansari Amirhassan, Langrock Carsten, Sinclair Neil, Wong Franco N C, Fejer M M, Lončar Marko
Opt Lett. 2022 Jun 1;47(11):2830-2833. doi: 10.1364/OL.456873.
Existing nonlinear-optic implementations of pure, unfiltered heralded single-photon sources do not offer the scalability required for densely integrated quantum networks. Additionally, lithium niobate has hitherto been unsuitable for such use due to its material dispersion. We engineer the dispersion and the quasi-phasematching conditions of a waveguide in the rapidly emerging thin-film lithium niobate platform to generate spectrally separable photon pairs in the telecommunications band. Such photon pairs can be used as spectrally pure heralded single-photon sources in quantum networks. We estimate a heralded-state spectral purity of >94% based on joint spectral intensity measurements. Further, a joint spectral phase-sensitive measurement of the unheralded time-integrated second-order correlation function yields a heralded-state purity of (86±5).
现有的纯的、未滤波的预示单光子源的非线性光学实现方式无法提供密集集成量子网络所需的可扩展性。此外,铌酸锂由于其材料色散,迄今为止并不适用于此类用途。我们在迅速兴起的薄膜铌酸锂平台中对波导的色散和准相位匹配条件进行了工程设计,以在电信频段产生光谱可分离的光子对。这样的光子对可在量子网络中用作光谱纯的预示单光子源。基于联合光谱强度测量,我们估计预示态光谱纯度大于94%。此外,对未预示的时间积分二阶关联函数进行联合光谱相位敏感测量,得到的预示态纯度为(86±5)。