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Efficient fiber-pigtailed source of indistinguishable single photons

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arxiv 2410.07760 v1 pith:LKYU43VU submitted 2024-10-10 quant-ph

classification quant-ph
keywords singleefficientphotonsalignmentdevicefiberindistinguishabilityindistinguishable
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abstract

Semiconductor quantum dots in microcavities are an excellent platform for the efficient generation of indistinguishable single photons. However, their use in a wide range of quantum technologies requires their controlled fabrication and integration in compact closed-cycle cryocoolers, with a key challenge being the efficient and stable extraction of the single photons into a single-mode fiber. Here we report on a novel method for fiber-pigtailing of deterministically fabricated single-photon sources. Our technique allows for nanometer-scale alignment accuracy between the source and a fiber, alignment that persists all the way from room temperature to 2.4 K. We demonstrate high performance of the device under near-resonant optical excitation with g$^{(2)}$(0) = 1.3 %, a photon indistinguishability of 97.5 % and a fibered brightness of 20.8 %. We show that the indistinguishability and single-photon rate are stable for over ten hours of continuous operation in a single cooldown. We further confirm that the device performance is not degraded by nine successive cooldown-warmup cycles.

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  1. Asymmetric two-photon response of an incoherently driven quantum emitter

    quant-ph 2025-07 conditional novelty 7.0 of 10

    In a phonon-assisted pumped quantum dot, the first of two photons emitted under one pulse is red-shifted, yielding the Rabi frequency and enabling spectral suppression of multiphoton noise.

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