论文标题
从激光器的高维经典纠缠的光
High-dimensional classically entangled light from a laser
论文作者
论文摘要
从沟通到成像,利用量子样的相关性,载体结构化的光已成为许多不同应用中的一种启示工具,这是由于非分离在空间上变化的极化结构提供的。在源头上创建这些状态仍然具有挑战性,目前被定制的激光器限制在二维矢量状态下。在这里,我们在简单的激光腔中调用射线波偶性,以产生极化标记的多路径模式,这些模式在三个自由度和八个维度上是不可分割的。作为主题的例子,我们使用激光来生产完整的Greenberger-Horne-Zeilinger(GHz)基础状态,并用经典的光模仿高维的多目标纠缠,我们通过一种新的投影方法确认。我们为基于SU(2)对称组的激光提供了一个完整的理论框架,揭示了一个丰富的参数空间以进行进一步开发。我们的方法仅需要一个没有特殊光学元素的传统激光器,易于缩放到更高的尺寸,并为源源不断的结构光的经典纠缠状态提供简单但优雅的解决方案,并在模拟和增强高维量子系统方面打开了新的应用程序。
Vectorially structured light has emerged as an enabling tool in many diverse applications, from communication to imaging, exploiting quantum-like correlations courtesy of a non-separable spatially varying polarization structure. Creating these states at the source remains challenging and is presently limited to two-dimensional vectorial states by customized lasers. Here we invoke ray-wave duality in a simple laser cavity to produce polarization marked multi-path modes that are non-separable in three degrees of freedom and in eight dimensions. As a topical example, we use our laser to produce the complete set of Greenberger-Horne-Zeilinger (GHZ) basis states, mimicking high-dimensional multi-partite entanglement with classical light, which we confirm by a new projection approach. We offer a complete theoretical framework for our laser based on SU(2) symmetry groups, revealing a rich parameter space for further exploitation. Our approach requires only a conventional laser with no special optical elements, is easily scaleable to higher dimensions, and offers a simple but elegant solution for at-the-source creation of classically entangled states of structured light, opening new applications in simulating and enhancing high-dimensional quantum systems.