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February 22, 2026Technical Physics3 citations

Effect of Atmospheric Refraction on a Satellite Optical Communication Channel

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MSM. V. SapozhnikovSKS. Yu. KazantsevYMYu. B. Mironov

Key Points

  • To investigate how atmospheric refraction impacts the performance of optical communication channels used by satellites.
  • Conducted numerical modeling based on various Earth atmosphere models.
  • Analyzed beam shifts for different wavelengths and input angles of light.
  • Considered latitude and season variability, and homogeneity of atmospheric layers.
  • Quantitatively assessed optical beam shifts at the receiver plane.
  • Demonstrated variations impacted by actual satellite trajectory and atmospheric conditions.
  • Highlighted the necessity for optimized designs to enhance communication reliability.

Abstract

In this study, the effect of atmospheric refraction on parameters of optical radiation propagating through the atmosphere is investigated with account for the optical beam shift at the receiver aperture and a change in the physical length of the beam trajectory in the atmosphere. We report on the results of numerical modeling based on approximations in different models of the Earth atmosphere, which has made it possible to assess quantitatively the optical beam shift in the receiver plane. Analysis has been performed for different wavelengths, input angles of the beam to the atmosphere, latitudes and seasons with account for homogeneity of atmospheric layers in various limits. The importance of taking into account the actual satellite trajectory and atmospheric pressure and temperature profiles as functions of altitude in designing satellite optical communication systems has been demonstrated. Resulting data can be useful for optimization of designing and for the improvement of reliability of optical communication systems in the conditions of variability of real atmosphere.

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Cite This Study

Sapozhnikov et al. (2026) studied this question.

synapsesocial.com/papers/699a9cc6482488d673cd288fhttps://doi.org/10.1134/s1063784225601309
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