物理
量子计量学
量子技术
光子学
光子
量子网络
量子力学
叠加原理
量子传感器
量子光学
量子成像
W州
态叠加原理
量子
量子信息
量子态
量子信息科学
光子纠缠
量子纠缠
开放量子系统
作者
Leizhen Chen,Liangliang Lu,Lijun Xia,Yanqing Lu,Shining Zhu,Xiaosong Ma
标识
DOI:10.1103/physrevlett.130.223601
摘要
Integrated quantum photonics has recently emerged as a powerful platform for generating, manipulating, and detecting entangled photons. Multipartite entangled states lie at the heart of the quantum physics and are the key enabling resources for scalable quantum information processing. Dicke state is an important class of genuinely entangled state, which has been systematically studied in the light-matter interactions, quantum state engineering, and quantum metrology. Here, by using a silicon photonic chip, we report the generation and collectively coherent control of the entire family of four-photon Dicke states, i.e., with arbitrary excitations. We generate four entangled photons from two microresonators and coherently control them in a linear-optic quantum circuit, in which the nonlinear and linear processing are achieved in a chip-scale device. The generated photons are in telecom band, which lays the groundwork for large-scale photonic quantum technologies for multiparty networking and metrology.
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