论文标题

多核光纤的多维纠缠产生

Multi-dimensional entanglement generation with multi-core optical fibers

论文作者

Gómez, E. S., Gómez, S., Machuca, I., Cabello, A., Pádua, S., Walborn, S. P., Lima, G.

论文摘要

光子量子信息的趋势紧随经典光学和电信的技术进步。在这方面,还为生成多维量子状态(QUDITS)的多元光通信渠道的进步,因为它们的使用对于多个量子信息任务是有利的。朝这个方向前进的一个当前路径是使用太空划分多路复用多核光纤,该光纤为有效控制路径编码的QUDIT状态提供了一个新的平台。在这里,我们报告了纠缠量的参数下转换来源,该Qudits完全基于(并因此与)最先进的多核光纤技术。源设计使用现代的多核光纤束拆分器来准备泵激光束并测量产生的纠缠状态,在提供稳定的建筑时达到了高光谱亮度。此外,它可以轻松地与任何核心几何形状一起使用,这至关重要,因为尚未确定电信中多核纤维的广泛标准。我们的来源代表了朝着量子通信与下一代光网络兼容的重要一步。

Trends in photonic quantum information follow closely the technical progress in classical optics and telecommunications. In this regard, advances in multiplexing optical communications channels have also been pursued for the generation of multi-dimensional quantum states (qudits), since their use is advantageous for several quantum information tasks. One current path leading in this direction is through the use of space-division multiplexing multi-core optical fibers, which provides a new platform for efficiently controlling path-encoded qudit states. Here we report on a parametric down-conversion source of entangled qudits that is fully based on (and therefore compatible with) state-of-the-art multi-core fiber technology. The source design uses modern multi-core fiber beam splitters to prepare the pump laser beam as well as measure the generated entangled state, achieving high spectral brightness while providing a stable architecture. In addition, it can be readily used with any core geometry, which is crucial since widespread standards for multi-core fibers in telecommunications have yet to be established. Our source represents an important step towards the compatibility of quantum communications with the next-generation optical networks.

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