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Photon Number States via Iterated Photon Addition in a Loop
We consider the probabilistic generation of time-bin photon number states from a train of single-photon pulses. We propose a simple interferometric feedback loop setup having a beam splitter and a possibly non-ideal detector. This Hong–Ou–Mandel-type scheme implements iterated photon additions. Our...
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Published in: | Photonics 2024-11, Vol.11 (11), p.1075 |
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creator | Mendei, Barna Koniorczyk, Mátyás Homa, Gábor Adam, Peter |
description | We consider the probabilistic generation of time-bin photon number states from a train of single-photon pulses. We propose a simple interferometric feedback loop setup having a beam splitter and a possibly non-ideal detector. This Hong–Ou–Mandel-type scheme implements iterated photon additions. Our detailed study shows that up to four photons this simple setup can provide reasonable success probabilities and fidelities. |
doi_str_mv | 10.3390/photonics11111075 |
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subjects | Atoms Detectors Efficiency Feedback loops Hong Ou–Mandel interference nonclassical states of light Photon beams Photons Quantum dots Sensors time-bin photon modes |
title | Photon Number States via Iterated Photon Addition in a Loop |
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