Single-active-element demultiplexed multi-photon source

L. M. Hansen, L. Carosini, L. Jehle, F. Giorgino, R. Houvenaghel, M. Vyvlecka, J. C. Loredo, P. Walther
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引用次数: 1

Abstract

Temporal-to-spatial mode demultiplexing routes non-simultaneous events of the same spatial mode to distinct output trajectories. This technique has now been widely adopted, because it gives access to higher-number multi-photon states when exploiting solid-state quantum emitters. However, implementations so far have required an always-increasing number of active elements and are therefore rapidly facing resource constraints. Here, we propose and demonstrate a demultiplexing approach that uses only a single active element for routing to, in principle, an arbitrary number of outputs. We employ our device in combination with a high-efficiency single-photon source based on a quantum dot, and measure up to eight demultiplexed highly indistinguishable single photons. We discuss the practical limitations of our approach, and describe in which conditions it can be used to demultiplex, e.g., tens of outputs. Our scheme thus provides a path for the preparation of resource-efficient larger-scale multi-photon sources.
单有源解复用多光子源
时空模式解复用将同一空间模式的非同时事件路由到不同的输出轨迹。这种技术现在已经被广泛采用,因为它可以在利用固态量子发射器时获得更高数量的多光子态。然而,到目前为止,实现需要不断增加的活动元素数量,因此迅速面临资源限制。在这里,我们提出并演示了一种解复用方法,该方法原则上仅使用单个活动元素路由到任意数量的输出。我们将我们的设备与基于量子点的高效单光子源结合使用,并测量多达八个解复用的高度不可区分的单光子。我们讨论了我们的方法的实际局限性,并描述了在哪些条件下它可以用于解复用,例如,几十个输出。因此,我们的方案为制备资源高效的大规模多光子源提供了一条途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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