Experimental loopback boson sampling

Fuente: arXiv
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Main Authors: Biriukov, Yu. A., Morozov, R. D., Okhlopkov, K. I., Dyakonov, I. V., Skryabin, N. N., Zhuravitskii, S. A., Dryazgov, M. A., Taratorin, K. V., Korneev, A. A., Kulik, S. P., Rakhlin, S. S. Straupe M. V., Galimov, A. I., Klimko, G. V., Sorokin, S. V., Sedova, I. V., Kulagina, M. M., Zadiranov, Yu. M., Toropov, A. A.
Format: Preprint
Published: 2025
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author Biriukov, Yu. A.
Morozov, R. D.
Okhlopkov, K. I.
Dyakonov, I. V.
Skryabin, N. N.
Zhuravitskii, S. A.
Dryazgov, M. A.
Taratorin, K. V.
Korneev, A. A.
Kulik, S. P.
Rakhlin, S. S. Straupe M. V.
Galimov, A. I.
Klimko, G. V.
Sorokin, S. V.
Sedova, I. V.
Kulagina, M. M.
Zadiranov, Yu. M.
Toropov, A. A.
author_facet Biriukov, Yu. A.
Morozov, R. D.
Okhlopkov, K. I.
Dyakonov, I. V.
Skryabin, N. N.
Zhuravitskii, S. A.
Dryazgov, M. A.
Taratorin, K. V.
Korneev, A. A.
Kulik, S. P.
Rakhlin, S. S. Straupe M. V.
Galimov, A. I.
Klimko, G. V.
Sorokin, S. V.
Sedova, I. V.
Kulagina, M. M.
Zadiranov, Yu. M.
Toropov, A. A.
contents We present an experimental demonstration of boson sampling enhanced by optical feedback lines, a novel approach that introduces temporal correlations among photons to amplify computational complexity. We utilize a 25-mode femtosecond laser-written interferometer with five output channels connected to five input channels to create correlations between consecutive photon arrival events. We have reconstructed the unitary matrix of the chip and have conducted Bayesian analysis to validate the sampler and confirm that the system exhibits behavior distinct from standard boson sampling. We also built a theoretical description of the system based on the transformation of annihilation operators and, using it, delivered the structure of the transmission matrix and the complexity of our boson sampler in terms of a conventional boson sampler. This work advances photonic quantum computing by demonstrating a resource-efficient method to increase sampling complexity, paving the way for scalable demonstration of quantum advantage with single photons.
format Preprint
id arxiv_https___arxiv_org_abs_2511_09382
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Experimental loopback boson sampling
Biriukov, Yu. A.
Morozov, R. D.
Okhlopkov, K. I.
Dyakonov, I. V.
Skryabin, N. N.
Zhuravitskii, S. A.
Dryazgov, M. A.
Taratorin, K. V.
Korneev, A. A.
Kulik, S. P.
Rakhlin, S. S. Straupe M. V.
Galimov, A. I.
Klimko, G. V.
Sorokin, S. V.
Sedova, I. V.
Kulagina, M. M.
Zadiranov, Yu. M.
Toropov, A. A.
Quantum Physics
We present an experimental demonstration of boson sampling enhanced by optical feedback lines, a novel approach that introduces temporal correlations among photons to amplify computational complexity. We utilize a 25-mode femtosecond laser-written interferometer with five output channels connected to five input channels to create correlations between consecutive photon arrival events. We have reconstructed the unitary matrix of the chip and have conducted Bayesian analysis to validate the sampler and confirm that the system exhibits behavior distinct from standard boson sampling. We also built a theoretical description of the system based on the transformation of annihilation operators and, using it, delivered the structure of the transmission matrix and the complexity of our boson sampler in terms of a conventional boson sampler. This work advances photonic quantum computing by demonstrating a resource-efficient method to increase sampling complexity, paving the way for scalable demonstration of quantum advantage with single photons.
title Experimental loopback boson sampling
topic Quantum Physics
url https://arxiv.org/abs/2511.09382