Content of issue 11, volume 36, 2023

1. Bykov A. D., Voronin B. A. Isotopic shifts of vibrational-rotational lines of SO2. P. 869–873
Bibliographic reference:
Bykov A. D., Voronin B. A. Isotopic shifts of vibrational-rotational lines of SO2. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 869–873. DOI: 10.15372/AOO20231101 [in Russian].
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Bykov A.D., Voronin B.A. Isotopic Shifts of Vibrational-Rotational Lines of SO2 // Atmospheric and Oceanic Optics, 2024, V. 37. No. 01. pp. 7–13.
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2. Golobokova L. P., Berdashkinova O. I., Loskutova M. A., Rize D. D., Onischuk N. A., Sakerin S. M., Turchinovich Yu. S. Long-term studies of aerosol chemical composition of the atmosphere at „Cape Baranov Ice Base“ station. P. 874–882
Bibliographic reference:
Golobokova L. P., Berdashkinova O. I., Loskutova M. A., Rize D. D., Onischuk N. A., Sakerin S. M., Turchinovich Yu. S. Long-term studies of aerosol chemical composition of the atmosphere at „Cape Baranov Ice Base“ station. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 874–882. DOI: 10.15372/AOO20231102 [in Russian].
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Golobokova L.P., Berdashkinova O.I., Loskutova M.A., Rize D.D., Onischuk N.A., Sakerin S.M., Turchinovich Yu.S. Long-term Studies of Atmospheric Aerosol Chemical Composition at the Cape Baranov Ice Base Station // Atmospheric and Oceanic Optics, 2024, V. 37. No. 01. pp. 13–23.
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3. Veretennikov V. V., Uzhegov V. N., Shmargunov V. P. Dynamics of microphysical parameters of the pyrolysis smoke based on the results of inversion of aerosol scattering and extinction coefficients in the Big Aerosol Chamber of IAO SB RAS. P. 883–894
Bibliographic reference:
Veretennikov V. V., Uzhegov V. N., Shmargunov V. P. Dynamics of microphysical parameters of the pyrolysis smoke based on the results of inversion of aerosol scattering and extinction coefficients in the Big Aerosol Chamber of IAO SB RAS. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 883–894. DOI: 10.15372/AOO20231103 [in Russian].
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4. Antokhina O. Yu., Аntokhin P. N., Arshinova V. G., Arshinov M. Yu., Ancellet G., Belan B. D., Belan S. B., Davydov D. K., Ivlev G. A., Kozlov A. V., Law K. S., Nedelec Ph., Rasskazchikova T. M., Paris J.-D.., Savkin D. E., Simonenkov D. V., Sklyadneva T. K., Tolmachev G. N., Fofonov A. V. Air composition over the Russian Arctic. 3 – Trace gases. P. 895–903
Bibliographic reference:
Antokhina O. Yu., Аntokhin P. N., Arshinova V. G., Arshinov M. Yu., Ancellet G., Belan B. D., Belan S. B., Davydov D. K., Ivlev G. A., Kozlov A. V., Law K. S., Nedelec Ph., Rasskazchikova T. M., Paris J.-D.., Savkin D. E., Simonenkov D. V., Sklyadneva T. K., Tolmachev G. N., Fofonov A. V. Air composition over the Russian Arctic. 3 – Trace gases. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 895–903. DOI: 10.15372/AOO20231104 [in Russian].
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Antokhina O.Yu., Antokhin P.N., Arshinova V.G., Arshinov M.Yu., Ancellet G., Belan B.D., Belan S.B., Davydov D.K., Ivlev G.A., Kozlov A.V., Law K., Nédélec P., Rasskazchikova T.M., Paris J.-D., Savkin D.E., Simonenkov D.V., Sklyadneva T.K., Tolmachev G.N., Fofonov A.V. Air Composition over the Russian Arctic: 3–Trace Gases // Atmospheric and Oceanic Optics, 2024, V. 37. No. 01. pp. 31–47.
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5. Bazhenov O. E. Chlorine oxide as an indicator of ozone destruction in the winter-spring Arctic stratosphere based on Aura MLS observations. P. 904–909
Bibliographic reference:
Bazhenov O. E. Chlorine oxide as an indicator of ozone destruction in the winter-spring Arctic stratosphere based on Aura MLS observations. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 904–909. DOI: 10.15372/AOO20231105 [in Russian].
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Bazhenov O.E. Chlorine Oxide as an Indicator of Ozone Destruction in the Winter–Spring Arctic Stratosphere Based on Aura MLS Observations // Atmospheric and Oceanic Optics, 2024, V. 37. No. 01. pp. 48–54.
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6. Razenkov I. A. Sounding of Kelvin–Helmholtz waves by a turbulent lidar. I. Lidar BSE-4. P. 910–920
Bibliographic reference:
Razenkov I. A. Sounding of Kelvin–Helmholtz waves by a turbulent lidar. I. Lidar BSE-4. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 910–920. DOI: 10.15372/AOO20231106 [in Russian].
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Razenkov I.A. Sounding of Kelvin–Helmholtz Waves by a Turbulent Lidar: I–BSE-4 Lidar // Atmospheric and Oceanic Optics, 2024, V. 37. No. 01. pp. 55–65.
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7. Sin’kevich A. A., Tarabukin I. f., Toropova M. L., Mikhailovskii Yu. P., Veremei N. E., Kurov A. B., Yusupov I. E., Bocharnikov N. V., Lalushkin A. S., Solonin A. S., Starykh D. S. Structure and сharacteristics of a Сb during lightning formation. P. 921–927
Bibliographic reference:
Sin’kevich A. A., Tarabukin I. f., Toropova M. L., Mikhailovskii Yu. P., Veremei N. E., Kurov A. B., Yusupov I. E., Bocharnikov N. V., Lalushkin A. S., Solonin A. S., Starykh D. S. Structure and сharacteristics of a Сb during lightning formation. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 921–927. DOI: 10.15372/AOO20231107 [in Russian].
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Sin’kevich A.A., Tarabukin I.A., Toropova M.L., Mikhailovskii Yu.P., Veremei N.E., Kurov A.B., Yusupov I.E., Bocharnikov N.V., Lalushkin A.S., Solonin A.S., Starykh D.S. Structure and Characteristics of a Сb during Lightning // Atmospheric and Oceanic Optics, 2024, V. 37. No. 01. pp. 66–73.
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8. Vinogradov N. P., Tarasenko V. F. Effect of relative air humidity on the properties of diffuse plasma jets. P. 928–933
Bibliographic reference:
Vinogradov N. P., Tarasenko V. F. Effect of relative air humidity on the properties of diffuse plasma jets. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 928–933. DOI: 10.15372/AOO20231108 [in Russian].
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9. Foka S. Ch., Makarova M. V., Poberovsky A. V., Ionov D. V., Abakumov E. V. Analysis of mixing ratios of greenhouse carbon-containing gases at the atmospheric monitoring station of St. Petersburg State University. P. 934–941
Bibliographic reference:
Foka S. Ch., Makarova M. V., Poberovsky A. V., Ionov D. V., Abakumov E. V. Analysis of mixing ratios of greenhouse carbon-containing gases at the atmospheric monitoring station of St. Petersburg State University. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 934–941. DOI: 10.15372/AOO20231109 [in Russian].
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Foka S.Ch., Makarova M.V., Poberovsky A.V., Ionov D.V., Abakumov E.V. Analysis of Mixing Ratios of Greenhouse Carbon-Containing Gases at the Atmospheric Monitoring Station of St. Petersburg State University // Atmospheric and Oceanic Optics, 2024, V. 37. No. 01. pp. 74–81.
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10. Zuev V. V., Maslennikova E. A., Saveljeva E. S., Pavlinskii A. V. Sensitivity of the Antarctic polar vortex to temperature changes in the lower subtropical stratosphere. P. 942–945
Bibliographic reference:
Zuev V. V., Maslennikova E. A., Saveljeva E. S., Pavlinskii A. V. Sensitivity of the Antarctic polar vortex to temperature changes in the lower subtropical stratosphere. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 942–945. DOI: 10.15372/AOO20231110 [in Russian].
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Zuev V.V., Maslennikova E.A., Savelieva E.S., Pavlinsky A.V. Sensitivity of the Antarctic Polar Vortex to Temperature Changes in the Lower Subtropical Stratosphere // Atmospheric and Oceanic Optics, 2024, V. 37. No. 01. pp. 99–102.
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11. Bol'basova L. A., Borzilov A. G., Kazakov D. V., Lukin V. P., Soin E. L. Measurements of atmospheric parameters on extended paths. III. Experimental tests of the adaptive optics system prototype. P. 946–952
Bibliographic reference:
Bol'basova L. A., Borzilov A. G., Kazakov D. V., Lukin V. P., Soin E. L. Measurements of atmospheric parameters on extended paths. III. Experimental tests of the adaptive optics system prototype. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 946–952. DOI: 10.15372/AOO20231111 [in Russian].
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12. Hongda Li., Konovalov I. N., Panchenko Yu. N., Puchikin A. V., Andreev M. V., Bobrovnikov S. M. Pulsed CO2 laser pumped by a longitudinal discharge in an alternating magnetic field. P. 953–957
Bibliographic reference:
Hongda Li., Konovalov I. N., Panchenko Yu. N., Puchikin A. V., Andreev M. V., Bobrovnikov S. M. Pulsed CO2 laser pumped by a longitudinal discharge in an alternating magnetic field. // Optika Atmosfery i Okeana. 2023. V. 36. No. 11. P. 953–957. DOI: 10.15372/AOO20231112 [in Russian].
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Hongda Li, Konovalov I.N., Panchenko Yu.N., Puchikin A.V., Andreev M.V.,Bobrovnikov S.M. Pulsed CO2 Laser Pumped by a Longitudinal Discharge in an Alternating Magnetic Field // Atmospheric and Oceanic Optics, 2024, V. 37. No. 01. pp. 118–122.
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13. Information. P. 958