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Single-active-element demultiplexed multi-photon source

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arxiv 2304.12956 v1 pith:CXT4GLHC submitted 2023-04-25 quant-ph

classification quant-ph
keywords multi-photonactiveapproachdemultiplexeddemultiplexingnumberoutputsquantum
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Temporal-to-spatial 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, rapidly facing resource constraints. Here, we propose and demonstrate a demultiplexing approach that utilizes 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 quantum dot based single-photon source, 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 results thus provides a path for the preparation of resource-efficient larger-scale multi-photon sources.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Indistinguishability of remote quantum dot-cavity single-photon sources

    quant-ph 2024-12 conditional novelty 6.0 of 10

    Remote quantum-dot cavity sources reach up to 69 percent two-photon indistinguishability, a record for this source type, with the remaining distinguishability attributed mainly to slow spectral wandering.

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