Content of issue 10, volume 38, 2025

1. Rytchkov D. S. Evaluation of a possibility of measuring the topological charge of a vortex beam along an atmospheric path with a Shack–Hartmann sensor. P. 781–787
Bibliographic reference:
Rytchkov D. S. Evaluation of a possibility of measuring the topological charge of a vortex beam along an atmospheric path with a Shack–Hartmann sensor. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 781–787. DOI: 10.15372/AOO20251001 [in Russian].
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2. Banakh V. A., Zaloznaya E. D., Zaloznaya I. V., Falits A. V. Function of spatial coherence of a spherical wave in a turbulent atmosphere. Analysis based on the wave equation. P. 788–793
Bibliographic reference:
Banakh V. A., Zaloznaya E. D., Zaloznaya I. V., Falits A. V. Function of spatial coherence of a spherical wave in a turbulent atmosphere. Analysis based on the wave equation. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 788–793. DOI: 10.15372/AOO20251002 [in Russian].
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Banakh V.A., Zaloznaya E.D., Zaloznaya I.V., Falits A.V. Spatial Coherence Function of a Spherical Wave in a Turbulent Atmosphere. Analysis Based on the Wave Equation // Atmospheric and Oceanic Optics, 2026, V. 39. No. 01. pp. 1–7.
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3. Simonova A. A., Ptashnik I. V. Experimental self- and foreign-continuum of water vapor in the 1600 cm-1 absorption band. P. 794–800
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Simonova A. A., Ptashnik I. V. Experimental self- and foreign-continuum of water vapor in the 1600 cm-1 absorption band. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 794–800. DOI: 10.15372/AOO20251003 [in Russian].
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4. Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. Ergodicity of random processes. P. 801–811
Bibliographic reference:
Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. Ergodicity of random processes. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 801–811. DOI: 10.15372/AOO20251004 [in Russian].
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Nosov V.V., Lukin V.P., Torgaev A.V., Nosov E.V. Ergodicity of Random Processes // Atmospheric and Oceanic Optics, 2025, V. 38. No. 06. pp. 802–812.
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5. Kabanov D. M., Kruglinsky I. A., Sakerin S. M., Sidorova O. R. Interannual and seasonal variability of the aerosol optical depth of the atmosphere at Mirny Station (Antarctica). P. 812–818
Bibliographic reference:
Kabanov D. M., Kruglinsky I. A., Sakerin S. M., Sidorova O. R. Interannual and seasonal variability of the aerosol optical depth of the atmosphere at Mirny Station (Antarctica). // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 812–818. DOI: 10.15372/AOO20251005 [in Russian].
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Kabanov D.M., Kruglinsky I.A., Sakerin S.M., Sidorova O.P. Interannual and Seasonal Variability of the Aerosol Optical Depth of the Atmosphere at the Mirny Station (Antarctica) // Atmospheric and Oceanic Optics, 2026, V. 39. No. 01. pp. 24–32.
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6. Aleksanin A. I., Lebedev M. A. Adjustment of color indices for the Far East region using MUMM atmospheric correction. P. 819–824
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Aleksanin A. I., Lebedev M. A. Adjustment of color indices for the Far East region using MUMM atmospheric correction. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 819–824. DOI: 10.15372/AOO20251006 [in Russian].
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Aleksanin A.I., Lebedev M.A. Adjustment of Color Indices for the Far East Region with the Use of MUMM Atmospheric Correction // Atmospheric and Oceanic Optics, 2026, V. 39. No. 01. pp. 56–64.
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7. Sherstobitov A. M., Banakh V. A., Smalikho I. N. Aircraft measurements of vertical wind velocity and turbulence parameters by LRV-2 lidar during nadir sounding. P. 825–831
Bibliographic reference:
Sherstobitov A. M., Banakh V. A., Smalikho I. N. Aircraft measurements of vertical wind velocity and turbulence parameters by LRV-2 lidar during nadir sounding. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 825–831. DOI: 10.15372/AOO20251007 [in Russian].
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Sherstobitov A.M., Banakh V.A., Smalikho I.N. Aircraft LRV-2 Lidar Measurements of Vertical Wind Speed and Turbulence Parameters // Atmospheric and Oceanic Optics, 2026, V. 39. No. 01. pp. 65–72.
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8. Sin’kevich A. A., Tarabukin I. f., Kurov A. B., Yusupov I. E., Toropova M. L., Mikhailovskii Yu. P. The influence of cloud merging on extreme precipitation formation in Saint-Petersburg. P. 832–838
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Sin’kevich A. A., Tarabukin I. f., Kurov A. B., Yusupov I. E., Toropova M. L., Mikhailovskii Yu. P. The influence of cloud merging on extreme precipitation formation in Saint-Petersburg. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 832–838. DOI: 10.15372/AOO20251008 [in Russian].
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Sinkevich A.A., Tarabukin I.A., Kurov A.B., Yusupov I.E., Toropova M.L., Mikhailovskii Yu.P. The Influence of Cloud Merging on Extreme Precipitation Formation in St. Petersburg // Atmospheric and Oceanic Optics, 2026, V. 39. No. 01. pp. 73–80.
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9. Pestunov D. A., Panchenko M. V., Domysheva V. M., Sakirko M. V., Shamrin A. M., Shmargunov V. P., Ivanov V. G. Spatial distribution of carbon dioxide concentration in Baikal surface water in spring. P. 839–847
Bibliographic reference:
Pestunov D. A., Panchenko M. V., Domysheva V. M., Sakirko M. V., Shamrin A. M., Shmargunov V. P., Ivanov V. G. Spatial distribution of carbon dioxide concentration in Baikal surface water in spring. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 839–847. DOI: 10.15372/AOO20251009 [in Russian].
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Pestunov D.A., Panchenko M.V., Domysheva V.M., Sakirko M.V., Shamrin A.M., Shmargunov V.P., Ivanov V.G. Spatial Distribution of Carbon Dioxide Concentration in Baikal Surface Water in Spring // Atmospheric and Oceanic Optics, 2025, V. 38. No. 06. pp. 821–829.
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10. Blagina A. P., Dementyeva S. O. Numerical simulation of the influence of aerosols on electrical processes in convective clouds during forest fires. P. 848–855
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Blagina A. P., Dementyeva S. O. Numerical simulation of the influence of aerosols on electrical processes in convective clouds during forest fires. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 848–855. DOI: 10.15372/AOO20251010 [in Russian].
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Blagina A.P., Dementyeva S.O. Numerical Simulation of the Influence of Aerosols on Electrical Processes in Convective Clouds during Wildfires // Atmospheric and Oceanic Optics, 2025, V. 38. No. 06. pp. 830–837.
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11. Penenko A. V., Rusin E. V., Emelyanov M. K. An algorithm for identifying pollution sources with nonlinear measurement operators. P. 856–864
Bibliographic reference:
Penenko A. V., Rusin E. V., Emelyanov M. K. An algorithm for identifying pollution sources with nonlinear measurement operators. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 856–864. DOI: 10.15372/AOO20251011 [in Russian].
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Penenko A.V., Rusin E.V., Emelyanov M.K. An Algorithm for Identifying Pollution Sources with Non-Linear Measurement Operators // Atmospheric and Oceanic Optics, 2025, V. 38. No. 06. pp. 838–846.
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12. Salnikov K. S., Konoshonkin A. V., Tkachev I. V., Kustova N. V., Shishko V. A., Timofeev D. N., Kan N. Discrete dipole method verification of physical optics approximation when calculating light backscattering. P. 865–873
Bibliographic reference:
Salnikov K. S., Konoshonkin A. V., Tkachev I. V., Kustova N. V., Shishko V. A., Timofeev D. N., Kan N. Discrete dipole method verification of physical optics approximation when calculating light backscattering. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 865–873. DOI: 10.15372/AOO20251012 [in Russian].
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Salnikov K.S., Konoshonkin A.V., Tkachev I.V., Kustova N.V., Shishko V.A., Timofeev D.N., Kan N. Verification of Physical Optics Approximation by the Discrete Dipole Method in Calculations of Light Backscattering // Atmospheric and Oceanic Optics, 2026, V. 39. No. 01. pp. 81–90.
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13. Lubenko D. M., Zyatikov I. A., Losev V. F., Alekseev S. V. Investigation of highly directional supercontinuum characteristics in nitrogen. P. 874–878
Bibliographic reference:
Lubenko D. M., Zyatikov I. A., Losev V. F., Alekseev S. V. Investigation of highly directional supercontinuum characteristics in nitrogen. // Optika Atmosfery i Okeana. 2025. V. 38. No. 10. P. 874–878. DOI: 10.15372/AOO20251013 [in Russian].
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