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    Up-converting nanoparticles for single-photon superresolution optical fluctuation imaging

    I.A. Peshko1, M.V. Korolkov1, A.B. Mikhalychev1, S.V. Mikhalycheva1, D.S. Mogilevtsev1,*, Guanying Chen2,3, and S. Ya. Kilin1

    • *Contact author: d.mogilevtsev@ifanbel.bas-net.by

    Phys. Rev. Applied 24, 044102 – Published 31 October, 2025

    DOI: https://doi.org/10.1103/9n6f-dv6c

    Abstract

    Here, we show that up-converting nanoparticles are able to function as stochastic non-Poissonian emitters suitable for superresolution optical fluctuation imaging. We uncover ranges of parameters where up-converting media with emitters such as rare-earth ions can exhibit nonexponential statistics of photon emission times. We also show that photon bunching can be induced by interactions between emitters. This effect can be used for a stochastic imaging modality in which only the contributions of interacting emitters to the cumulant image are enhanced. We also develop a method to use spatial cross-correlations of the registered field to enhance resolution.

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