论文标题
量子光学应用的集成微型炸弹源
Integrated micro-comb sources for quantum optical applications
论文作者
论文摘要
量子科学和技术的主要挑战是实现非经典安全通信,计量和最终有意义的量子模拟和计算的大规模,可控制的实用系统。光学频率梳子代表了一种强大的方法,因为它们提供了很高数量的时间和频率模式,这可能会导致大规模的量子系统。量子光学频率梳的生成和控制将使量子信号和信息处理能够实现独特,实用和可扩展的框架。在这里,我们回顾了在实现能量纠缠的光学频率梳子上的最新进展,并讨论光子整合和光纤电信组件的使用如何通过新功能启用量子状态控制,从而产生前所未有的功能。
A key challenge for quantum science and technology is to realise large-scale, precisely controllable, practical systems for non-classical secured communications, metrology and ultimately meaningful quantum simulation and computation. Optical frequency combs represent a powerful approach towards this, since they provide a very high number of temporal and frequency modes which can result in large-scale quantum systems. The generation and control of quantum optical frequency combs will enable a unique, practical and scalable framework for quantum signal and information processing. Here, we review recent progress on the realization of energy-time entangled optical frequency combs and discuss how photonic integration and the use of fiber-optic telecommunications components can enable quantum state control with new functionalities, yielding unprecedented capability.