Content of issue 12, volume 37, 2024

1. Nevzorova T.A., Dudaryonok A. S., Lavrentieva N. N. Calculations of the SO2 line shift coefficients by CO2 pressure: the ν1 + ν3 band. P. 997–1002
Bibliographic reference:
Nevzorova T.A., Dudaryonok A. S., Lavrentieva N. N. Calculations of the SO2 line shift coefficients by CO2 pressure: the ν1 + ν3 band. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 997–1002. DOI: 10.15372/AOO20241201 [in Russian].
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Nevzorova T.A., Dudaryonok A.S., Lavrentieva N.N. Calculation of CO2-shift Coefficients of SO2 Lines: ν1 + ν3 Band // Atmospheric and Oceanic Optics, 2025, V. 38. No. 02. pp. 123–129.
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2. Rodimova O. B. Continuum absorption in the wings of the rotational CO band in mixture with Argon. P. 1003–1006
Bibliographic reference:
Rodimova O. B. Continuum absorption in the wings of the rotational CO band in mixture with Argon. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1003–1006. DOI: 10.15372/AOO20241202 [in Russian].
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3. Marakasov D. A., Afanas'ev A. L., Gordeev E. V. Spectral composition of temperature turbulence for various stratification types of the surface air layer. P. 1007–1014
Bibliographic reference:
Marakasov D. A., Afanas'ev A. L., Gordeev E. V. Spectral composition of temperature turbulence for various stratification types of the surface air layer. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1007–1014. DOI: 10.15372/AOO20241203 [in Russian].
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Marakasov D.A., Afanasiev A.L., Gordeev E.V. Spectral Composition of Temperature Turbulence for Different Surface Air Layer Stratification Types // Atmospheric and Oceanic Optics, 2025, V. 38. No. 02. pp. 130–137.
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4. Pronchev G. B., Еrmakov A. N. The nature of hygroscopicity of aerosol haze particles over Beijing. P. 1015–1022
Bibliographic reference:
Pronchev G. B., Еrmakov A. N. The nature of hygroscopicity of aerosol haze particles over Beijing. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1015–1022. DOI: 10.15372/AOO20241204 [in Russian].
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Pronchev G.B., Yermakov A.N. The Nature of Hygroscopicity of Aerosol Haze Particles over Beijing // Atmospheric and Oceanic Optics, 2025, V. 38. No. 02. pp. 138–145.
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5. Bulygin A. D. Optimization of THz radiation generation by air laser profiling using genetic algorithm. P. 1023–1027
Bibliographic reference:
Bulygin A. D. Optimization of THz radiation generation by air laser profiling using genetic algorithm. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1023–1027. DOI: 10.15372/AOO20241205 [in Russian].
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Bulygin A.D. Optimization of THz Radiation Generation by Air Laser Profiling using Genetic Algorithm // Atmospheric and Oceanic Optics, 2025, V. 38. No. 02. pp. 146–150.
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6. Аntokhin P. N., Arshinova V. G., Arshinov M. Yu., Aryasov V. E., Belan B. D., Belan S. B., Davydov D. K., Ivlev G. A., Kozlov A. V., Panov A. V., Prokushkin A. S., Putilin I. R., Rasskazchikova T. M., Savkin D. E., Simonenkov D. V., Tolmachev G. N., Fofonov A. V. Comparison of greenhouse gas fluxes derived from measurements carried out by means of equipment suites of the Yakovlev-40 aircraft laboratory and ZOTTO Observatory. P. 1028–1034
Bibliographic reference:
Аntokhin P. N., Arshinova V. G., Arshinov M. Yu., Aryasov V. E., Belan B. D., Belan S. B., Davydov D. K., Ivlev G. A., Kozlov A. V., Panov A. V., Prokushkin A. S., Putilin I. R., Rasskazchikova T. M., Savkin D. E., Simonenkov D. V., Tolmachev G. N., Fofonov A. V. Comparison of greenhouse gas fluxes derived from measurements carried out by means of equipment suites of the Yakovlev-40 aircraft laboratory and ZOTTO Observatory. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1028–1034. DOI: 10.15372/AOO20241206 [in Russian].
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Antokhin P.N., Arshinova V.G., Arshinov M.Yu., Aryasov V.E., Belan B.D., Belan S.B., Davydov D.K., Ivlev G.A., Kozlov A.V., Panov A.V., Prokushkin A.S., Putilin I.R., Rasskazchikova T.M., Savkin D.E., Simonenkov D.V., Tolmachev G. N., Fofonov A.V. Comparison between Greenhouse Gas Fluxes Measured with the Equipment of Yakovlev-40 Aircraft Laboratory and ZOTTO Observatory // Atmospheric and Oceanic Optics, 2025, V. 38. No. 02. pp. 151–160.
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7. Dolgii S. I., Makeev A. P., Nevzorov A. V., Nevzorov A. A., Salnikova N. S., Kharchenko O. V. Vertical distribution of ozone in the upper troposphere – stratosphere according to lidar sounding data at the Siberian lidar station in 2023. P. 1035–1039
Bibliographic reference:
Dolgii S. I., Makeev A. P., Nevzorov A. V., Nevzorov A. A., Salnikova N. S., Kharchenko O. V. Vertical distribution of ozone in the upper troposphere – stratosphere according to lidar sounding data at the Siberian lidar station in 2023. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1035–1039. DOI: 10.15372/AOO20241207 [in Russian].
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Dolgii S.I., Makeev A.P., Nevzorov A.V., Nevzorov A.A., Salnikova N.S., Kharchenko O.V. Vertical Distribution of Ozone in the Upper Troposphere–Stratosphere according to lidar Sounding Data at the Siberian Lidar Station in 2023 // Atmospheric and Oceanic Optics, 2025, V. 38. No. 02. pp. 161–165.
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8. Smalikho I. N., Banakh V. A., Falits A. V., Sherstobitov A. M. Lidar studies of wave structures and wind turbulence in the stable atmospheric boundary layer. P. 1040–1052
Bibliographic reference:
Smalikho I. N., Banakh V. A., Falits A. V., Sherstobitov A. M. Lidar studies of wave structures and wind turbulence in the stable atmospheric boundary layer. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1040–1052. DOI: 10.15372/AOO20241208 [in Russian].
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Smalikho I.N., Banakh V.A., Falits A.V., Sherstobitov A.M. Lidar Studies of Wave Structures and Wind Turbulence in the Stable Atmospheric Boundary Layer // Atmospheric and Oceanic Optics, 2025, V. 38. No. 02. pp. 166–179.
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9. Ignatov R. Yu., Nahaev M. I., Rubinshtein K. G., Tsepelev V. Yu., Shaposhnikov D. S., Obukhov D. Yu., Rodin A. V., Sedov A. V. A system for predicting the transport of pollutants in the atmosphere for Russian regions. P. 1053–1060
Bibliographic reference:
Ignatov R. Yu., Nahaev M. I., Rubinshtein K. G., Tsepelev V. Yu., Shaposhnikov D. S., Obukhov D. Yu., Rodin A. V., Sedov A. V. A system for predicting the transport of pollutants in the atmosphere for Russian regions. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1053–1060. DOI: 10.15372/AOO20241209 [in Russian].
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Ignatov R.Yu., Nakhaev M.I., Rubinstein K.G., Tsepelev V.Yu., Shaposhnikov D.S., Obukhov D.Yu., Rodin A.V., Sedov A.V. A System for Predicting Pollutant Transport in the Atmosphere // Atmospheric and Oceanic Optics, 2025, V. 38. No. 02. pp. 188–197.
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10. Konoshonkin A. V., Kustova N. V., Shishko V. A., Timofeev D. N., Babinovich A. E. Light backscattering for horizontally oriented ice “plate”, “column”, and “hollow column” particles of cirrus cloud. P. 1061–1068
Bibliographic reference:
Konoshonkin A. V., Kustova N. V., Shishko V. A., Timofeev D. N., Babinovich A. E. Light backscattering for horizontally oriented ice “plate”, “column”, and “hollow column” particles of cirrus cloud. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1061–1068. DOI: 10.15372/AOO20241210 [in Russian].
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Konoshonkin A.V., Kustova N.V., Shishko V.A., Timofeev D.N., Babinovich A.E. Light Backscattering by Horizontally Oriented Ice “Plate,” “Column,” and “Hollow Column” Particles of Cirrus Clouds // Atmospheric and Oceanic Optics, 2025, V. 38. No. 02. pp. 198–205.
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11. Tentyukov M. P., Timushev D. A., Simonenkov D. V., Belan B. D., Shukurov K. A., Kozlov A. V. Dynamics of fractional of aerosol in the surface air of the boreal zone of Western Siberia (based on observational at the Fonovaya observatory). Part 1. Comparison of the periods of summer vegetation and winter dormancy of woody plants. P. 1069–1077
Bibliographic reference:
Tentyukov M. P., Timushev D. A., Simonenkov D. V., Belan B. D., Shukurov K. A., Kozlov A. V. Dynamics of fractional of aerosol in the surface air of the boreal zone of Western Siberia (based on observational at the Fonovaya observatory). Part 1. Comparison of the periods of summer vegetation and winter dormancy of woody plants. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1069–1077. DOI: 10.15372/AOO20241211 [in Russian].
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Tentyukov M.P., Timushev D.A., Simonenkov D.V., Belan B.D., Shukurov K.A., Kozlov A.V. Dynamics of Distribution of Aerosol Fractions in the Surface Air of the Boreal Zone of Western Siberia (Based on Observations at the Fonovaya Observatory)–Part 1: Comparison of the Periods of Summer Vegetation and Winter Dormancy of Woody Plants // Atmospheric and Oceanic Optics, 2025, V. 38. No. 02. pp. 206–215.
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12. Britvin A. V., Poller B. V., Poller A. B., Shakhov N. V. Experimental characteristics of atmospheric laser lines on paths of the research polygon of ILP SB RAS in Gorny Altai for environmental monitoring systems. P. 1078–1084
Bibliographic reference:
Britvin A. V., Poller B. V., Poller A. B., Shakhov N. V. Experimental characteristics of atmospheric laser lines on paths of the research polygon of ILP SB RAS in Gorny Altai for environmental monitoring systems. // Optika Atmosfery i Okeana. 2024. V. 37. No. 12. P. 1078–1084. DOI: 10.15372/AOO20241212 [in Russian].
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13. Author Index. P. 1085–1087
14. Information. P. 1088