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Quantum jump photodetector for narrowband photon counting with a single atom

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arxiv 2403.08674 v2 pith:MQWDELRM submitted 2024-03-13 quant-ph physics.atom-ph

classification quant-phphysics.atom-ph
keywords jumpquantumdarkratetimesatombandwidthcount
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Using a single neutral 87Rb atom held in an optical trap, and "quantum jump" detection of single-photon-initiated state changes, we demonstrate a single-photon quantum jump photodetector (QJPD) with intrinsically narrow bandwidth and strong rejection of out-of-band photons, of interest for detecting weak optical signals in the presence of a strong broadband background. By analyzing fluorescence photon count distributions for the bright and dark states with and without excitation, we measure quantum efficiency of 2.9(2)$\times 10^{-3}$, a record for single-pass quantum jump production, and signal-photon-unprovoked "dark jump" rate - analogous to the dark count rate of other detectors - 3(10)$\times 10^{-3}$ jumps per second during passive accumulation plus 4.0(4)$\times 10^{-3}$ jumps per readout, orders of magnitude below those of traditional single-photon detectors. Available methods can substantially improve QJPD quantum efficiency, dark jump rate, bandwidth and tunability.

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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. Coherent enhancement of collection of light from linear ion crystals

    quant-ph 2024-12 accept novelty 6.0 of 10

    A linear ion crystal can be tuned so its scattered light interferes constructively along the trap axis, boosting photon collection efficiency by up to 3.05 for nine 40Ca+ ions.

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