论文标题
使用非经典光提高经典目标检测性能
Enhancing classical target detection performance using nonclassical Light
论文作者
论文摘要
在本文中,我们在理论上和实验上证明了如何利用整体半导体量子光源中产生的相关性,以增强光学目标检测的性能。讨论了一种原型目标检测方案,即具有自发参数下转换的光子对来源的量子时间相关(QTC)检测方案。 QTC协议仅需要时间分辨的光子计数检测,该检测是不敏感的,因此适用于光学目标检测。作为与QTC检测方案的比较,我们还根据强度检测考虑了经典的相位不敏感目标检测方案。我们将目标检测问题提出为探针传输估计问题,并使用Fisher信息标准和接收器操作特征分析来量化目标检测性能。与经典的目标检测和范围协议不同,我们QTC检测协议中的探针光子与背景噪声完全没有区别,因此对于掩盖范围的应用程序有用。最后,我们的技术平台是高度可扩展的,可调节的,因此可以适合实用应用所需的大规模集成。
In this article, we demonstrate theoretically and experimentally how one can exploit correlations generated in monolithic semiconductor quantum light sources to enhance the performance of optical target detection. A prototype target detection protocol, the quantum time-correlation (QTC) detection protocol, with spontaneous parametric down-converted photon-pair sources, is discussed. The QTC protocol only requires time-resolved photon-counting detection, which is phase-insensitive and therefore suitable for optical target detection. As a comparison to the QTC detection protocol, we also consider a classical phase-insensitive target detection protocol based on intensity detection. We formulated the target detection problem as a probe light transmission estimation problem, and we quantify the target detection performance with the Fisher information criterion and the receiver operation characteristic analysis. Unlike classical target detection and ranging protocols, the probe photons in our QTC detection protocol are completely indistinguishable from the background noise and therefore useful for covert ranging applications. Finally, our technological platform is highly scalable and tunable and thus amenable to large scale integration necessary for practical applications.