论文标题
集成的单光子发射器
Integrated Single Photon Emitters
论文作者
论文摘要
实现用于量子信息处理和网络的可扩展系统对于量子信息社区至关重要。但是,由于在保持统一平台上实现所有必要的功能的挑战,同时保持各个元素的绩效要求严格,因此很难建立此类系统。一种应对这一挑战的有前途的方法是基于量子物理学和综合光子学中实验和理论能力的巩固。集成的量子光子设备可以在可扩展和成本效益的同时有效地控制和读出量子信息。在这里,我们回顾了固态单光子发射器中的最新发展以及各种集成光子结构,这些光子结构构成了未来可伸缩量子设备的关键成分。我们的工作有助于在可扩展和制造友好的平台上进一步开发和实现量子网络协议和量子逻辑。
The realization of scalable systems for quantum information processing and networking is of utmost importance to the quantum information community. However, building such systems is difficult because of challenges in achieving all the necessary functionalities on a unified platform while maintaining stringent performance requirements of the individual elements. A promising approach which addresses this challenge is based on the consolidation of experimental and theoretical capabilities in quantum physics and integrated photonics. Integrated quantum photonics devices allow efficient control and read-out of quantum information while being scalable and cost effective. Here we review recent developments in solid-state single photon emitters coupled with various integrated photonic structures, which form a critical component of future scalable quantum devices. Our work contributes to the further development and realization of quantum networking protocols and quantum logic on a scalable and fabrication-friendly platform.