论文标题

在经典和量子状态下轨道角动量状态的增强检测技术

Enhanced detection techniques of Orbital Angular Momentum states in the classical and quantum regimes

论文作者

Suprano, Alessia, Zia, Danilo, Polino, Emanuele, Giordani, Taira, Innocenti, Luca, Paternostro, Mauro, Ferraro, Alessandro, Spagnolo, Nicolò, Sciarrino, Fabio

论文摘要

光的轨道角动量(OAM)是几种经典和量子应用的中心,用于成像,信息处理和通信。但是,在许多情况下,OAM状态固有的复杂结构使它们的检测和分类并非繁琐。当前的大多数检测方案都是基于建立在Laguerre-Gauss模式下的OAM状态的模型。但是,这通常不足以捕获有关生成状态的完整信息。在本文中,我们超越了Laguerre-Gauss的假设,并采用超几何高斯模式作为精制模型的基础状态,在某些情况下,可以使用它来更好地量身定制OAM检测技术。我们表明,通过空间光调节器与单模纤维结合使用空间光调节器,可获得OAM检测中的增强性能,并基于机器学习方法来获得分类技术。此外,当使用超几何高斯模型相对于Laguerre-Gauss One时,在全息技术中获得了单模纤维耦合效率的三倍增强。这种改进可显着提高OAM编码的单光子检测系统的总体效率。鉴于大多数使用OAM态的实验作品有效地基于高几何 - 高斯模式的产生,因此我们的发现代表了用于量子通信,密码学和仿真的基于OAM方案的实验工具箱的相关添加。

The Orbital Angular Momentum (OAM) of light has been at the center of several classical and quantum applications for imaging, information processing and communication. However, the complex structure inherent in OAM states makes their detection and classification nontrivial in many circumstances. Most of the current detection schemes are based on models of the OAM states built upon the use of Laguerre-Gauss modes. However, this may not in general be sufficient to capture full information on the generated states. In this paper, we go beyond the Laguerre-Gauss assumption, and employ Hypergeometric-Gaussian modes as the basis states of a refined model that can be used -- in certain scenarios -- to better tailor OAM detection techniques. We show that enhanced performances in OAM detection are obtained for holographic projection via spatial light modulators in combination with single-mode fibers, and for classification techniques based on a machine learning approach. Furthermore, a three-fold enhancement in the single-mode fiber coupling efficiency is obtained for the holographic technique, when using the Hypergeometric-Gaussian model with respect to the Laguerre-Gauss one. This improvement provides a significant boost in the overall efficiency of OAM-encoded single-photon detection systems. Given that most of the experimental works using OAM states are effectively based on the generation of Hypergeometric-Gauss modes, our findings thus represent a relevant addition to experimental toolboxes for OAM-based protocols in quantum communication, cryptography and simulation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源