论文标题

距离感应从热光的二阶干扰出现

Distance sensing emerging from second-order interference of thermal light

论文作者

Pepe, Francesco V., Chilleri, Gabriele, Scala, Giovanni, Triggiani, Danilo, Kim, Yoon-Ho, Tamma, Vincenzo

论文摘要

我们基于热光的二阶干涉法介绍并描述了一种用于距离传感的技术。该方法基于测量两个检测器上强度波动之间的相关性,并提供了将远程掩码与源和检测器区分开的距离的估计值,即使无法通过一阶强度测量结果检索此类信息。我们展示了对这种距离的敏感性如何与不同实验场景中测得的干扰模式的相关程度密切相关,并且独立于光的光谱特性。值得注意的是,该协议也可用于在存在湍流的情况下测量远程反射对象的距离。我们证明了新的临界参数的出现,这些参数基于二阶相关性的程度,描述了空间二阶干扰的反直觉出现,不仅在两个检测器上都没有(一阶)相干性的情况下,而且在两个检测器上都观察到一阶干扰时。

We introduce and describe a technique for distance sensing, based on second-order interferometry of thermal light. The method is based on measuring correlation between intensity fluctuations on two detectors, and provides estimates of the distances separating a remote mask from the source and the detector, even when such information cannot be retrieved by first-order intensity measurements. We show how the sensitivity to such distances is intimately connected to the degree of correlation of the measured interference pattern in different experimental scenarios and independently of the spectral properties of light. Remarkably, this protocol can be also used to measure the distance of remote reflective objects in the presence of turbulence. We demonstrate the emergence of new critical parameters which benchmark the degree of second-order correlation, describing the counterintuitive emergence of spatial second-order interference not only in the absence of (first-order) coherence at both detectors but also when first order interference is observed at one of the two detectors.

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