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Experimental observation of counter-intuitive features of photonic bunching

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arxiv 2410.15883 v1 pith:WEERUGI6 submitted 2024-10-21 quant-ph

classification quant-ph
keywords photonsbunchingphotoniccounter-intuitivebosonsbunchclassicalindistinguishability
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Bosonic bunching is a term used to describe the well-known tendency of bosons to bunch together, and which differentiates their behaviour from that of fermions or classical particles. However, in some situations perfectly indistinguishable bosons may counter-intuitively bunch less than classical, distinguishable particles. Here we report two such counter-intuitive multiphoton bunching effects observed with three photons in a three-mode balanced photonic Fourier interferometer. In this setting, we show indistinguishable photons actually minimize the probability of bunching. We also show that any non-trivial value of the three-photon collective photonic phase leads to a decreased probability of all photons ending up in the same mode, even as we increase pairwise indistinguishability. Our experiments feature engineering of partial indistinguishability scenarios using both the time and the polarization photonic degrees of freedom, and a polarization-transparent 8-mode tunable interferometer with a quantum-dot source of single photons. Besides the foundational understanding, the observation of these counter-intuitive phenomena open news perspective in devising more efficient ways of routing photons for advantage in metrology and quantum computation.

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Cited by 2 Pith papers

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

  1. Optimal distillation of photonic indistinguishability

    quant-ph 2025-09 conditional novelty 8.0 of 10

    The authors derive the optimal heralded three-photon interference circuit for increasing photon indistinguishability, accounting for collective phases, and validate it on a programmable integrated photonic processor.

  2. Experimental validation of boson sampling using detector binning

    quant-ph 2025-02 conditional novelty 7.0 of 10

    Binned-mode photon-count distributions validate three-photon boson sampling over 50 random interferometers, and their Haar-averaged variance is proportional to the sum of squared photon overlaps.

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