光子纠缠
量子网络
量子纠缠
物理
光子
量子信息科学
量子技术
量子传感器
量子密钥分配
自发参量下转换
量子力学
量子成像
光子学
量子计量学
量子
开放量子系统
作者
Christian Schimpf,Marcus Reindl,Francesco Basso Basset,Klaus D. Jöns,Rinaldo Trotta,Armando Rastelli
摘要
The generation and long-haul transmission of highly entangled photon pairs is a cornerstone of emerging photonic quantum technologies with key applications such as quantum key distribution and distributed quantum computing. However, a natural limit for the maximum transmission distance is inevitably set by attenuation in the medium. A network of quantum repeaters containing multiple sources of entangled photons would allow overcoming this limit. For this purpose, the requirements on the source's brightness and the photon pairs' degree of entanglement and indistinguishability are stringent. Despite the impressive progress made so far, a definitive scalable photon source fulfilling such requirements is still being sought after. Semiconductor quantum dots excel in this context as sub-Poissonian sources of polarization entangled photon pairs. In this work, we present the state-of-the-art set by GaAs based quantum dots and use them as a benchmark to discuss the challenges toward the realization of practical quantum networks.
科研通智能强力驱动
Strongly Powered by AbleSci AI