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    Phase correlations of a strongly scintillating light wave propagating through a turbulent medium

    V. A. Bogachev1, I. V. Kolokolov2, V. V. Lebedev2, A. V. Nemtseva1,3, and F. A. Starikov1,4

    Phys. Rev. E 114, 034133 – Published 17 September, 2026

    DOI: https://doi.org/10.1103/c3q7-t5tm

    Abstract

    We investigate analytically and numerically correlation functions of the phase of light waves that propagate through turbulent media. We examine the case of strong scintillations that occur at large values of the Rytov dispersion σR2, which determines a level of distortions of the light wave. Then, it is possible to relate the pair correlation function of phase gradients to the known pair correlation function of the envelope dependent on the distance r assuming Gaussianity of the envelope of the beam. Our direct numerical simulations show that the profile of the pair correlation function for phase gradients gradually approaches the theoretical expression as the value of σR2 increases, if r<r0 where r0 is the Fried length, which is the correlation length of the wave. For larger r the behavior of the computed correlation function is quite different because of destroying the Gaussianity.

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