光电子学
光子学
光子
物理
量子成像
量子
量子传感器
量子技术
量子光学
量子信息科学
炸薯条
发光二极管
量子信息
量子网络
光学
量子纠缠
开放量子系统
电信
计算机科学
量子力学
作者
Hong Zeng,Zhaoqin He,Yunru Fan,Yue Luo,Chen Lyu,Jinpeng Wu,Yunbo Li,Sheng Liu,Dong Wang,Dechao Zhang,Juan-Juan Zeng,Guangwei Deng,You Wang,Hai‐Zhi Song,Zhen Wang,Lixing You,Kai Guo,Changzheng Sun,Yi Luo,Guang‐Can Guo
标识
DOI:10.1103/physrevlett.132.133603
摘要
An integrated quantum light source is increasingly desirable in large-scale quantum information processing. Despite recent remarkable advances, a new material platform is constantly being explored for the fully on-chip integration of quantum light generation, active and passive manipulation, and detection. Here, for the first time, we demonstrate a gallium nitride (GaN) microring based quantum light generation in the telecom C-band, which has potential toward the monolithic integration of quantum light source. In our demonstration, the GaN microring has a free spectral range of 330 GHz and a near-zero anomalous dispersion region of over 100 nm. The generation of energy-time entangled photon pair is demonstrated with a typical raw two-photon interference visibility of 95.5±6.5%, which is further configured to generate a heralded single photon with a typical heralded second-order autocorrelation g_{H}^{(2)}(0) of 0.045±0.001. Our results pave the way for developing a chip-scale quantum photonic circuit.
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