Experimental investigation of the role of spatial correlations in optical integration with heralded single photons

Fuente: arXiv
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Autori principali: Silva, L. Marques Fagundes, Pimenta, R. C. Souza, Magiotto, M. H., Gomes, R. M., Duzzioni, E. I., de Araújo, R. Medeiros, Ribeiro, P. H. Souto
Natura: Preprint
Pubblicazione: 2025
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author Silva, L. Marques Fagundes
Pimenta, R. C. Souza
Magiotto, M. H.
Gomes, R. M.
Duzzioni, E. I.
de Araújo, R. Medeiros
Ribeiro, P. H. Souto
author_facet Silva, L. Marques Fagundes
Pimenta, R. C. Souza
Magiotto, M. H.
Gomes, R. M.
Duzzioni, E. I.
de Araújo, R. Medeiros
Ribeiro, P. H. Souto
contents In this work, we demonstrate optical integration using heralded single photons and explore the influence of spatial correlations between photons on this process. Specifically, we experimentally harness the transverse spatial degrees of freedom of light within an optical processing framework based on heralded single photons. The integration is performed over binary phase patterns encoded via a phase-only spatial light modulator, with polarization serving as an auxiliary degree of freedom. Our findings reveal a distinct contrast in how spatial correlations affect image analysis: spatially uncorrelated photons are more effective at capturing the global features of an image encoded in the modulator, whereas spatially correlated photons exhibit enhanced sensitivity to local image details. Importantly, the optical integration scheme presented here bears a strong conceptual and operational resemblance to the DQC1 (Deterministic Quantum Computation with One Qubit) model. This connection underscores the potential of our approach for quantum-enhanced information processing, even in regimes where entanglement is minimal or absent.
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id arxiv_https___arxiv_org_abs_2508_21161
institution arXiv
publishDate 2025
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spellingShingle Experimental investigation of the role of spatial correlations in optical integration with heralded single photons
Silva, L. Marques Fagundes
Pimenta, R. C. Souza
Magiotto, M. H.
Gomes, R. M.
Duzzioni, E. I.
de Araújo, R. Medeiros
Ribeiro, P. H. Souto
Quantum Physics
Optics
In this work, we demonstrate optical integration using heralded single photons and explore the influence of spatial correlations between photons on this process. Specifically, we experimentally harness the transverse spatial degrees of freedom of light within an optical processing framework based on heralded single photons. The integration is performed over binary phase patterns encoded via a phase-only spatial light modulator, with polarization serving as an auxiliary degree of freedom. Our findings reveal a distinct contrast in how spatial correlations affect image analysis: spatially uncorrelated photons are more effective at capturing the global features of an image encoded in the modulator, whereas spatially correlated photons exhibit enhanced sensitivity to local image details. Importantly, the optical integration scheme presented here bears a strong conceptual and operational resemblance to the DQC1 (Deterministic Quantum Computation with One Qubit) model. This connection underscores the potential of our approach for quantum-enhanced information processing, even in regimes where entanglement is minimal or absent.
title Experimental investigation of the role of spatial correlations in optical integration with heralded single photons
topic Quantum Physics
Optics
url https://arxiv.org/abs/2508.21161