Content of issue 03, volume 36, 2023

1. Egorov O. V. Diabatic potential energy surfaces of the interacting triplet states 3A2 и 3B1 of the ozone molecule. P. 161–169
Bibliographic reference:
Egorov O. V. Diabatic potential energy surfaces of the interacting triplet states 3A2 и 3B1 of the ozone molecule. // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 161–169. DOI: 10.15372/AOO20230301 [in Russian].
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Egorov O.V. Diabatic Potential Energy Surfaces of the Interacting Triplet States 3A2 and 3B1 of the Ozone Molecule // Atmospheric and Oceanic Optics, 2023, V. 36. No. 04. pp. 277–286.
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2. Starikov V. I. Non-polynomial representation of the broadening coefficients of ammonia absorption lines by pressure of helium, argon, nitrogen, oxygen, air, hydrogen, carbon dioxide, and its own pressure. P. 170–178
Bibliographic reference:
Starikov V. I. Non-polynomial representation of the broadening coefficients of ammonia absorption lines by pressure of helium, argon, nitrogen, oxygen, air, hydrogen, carbon dioxide, and its own pressure. // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 170–178. DOI: 10.15372/AOO20230302 [in Russian].
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3. Zemlyanov A. A., Minina O. V. The condition of collapse stopping during propagation of high-power femtosecond laser pulses in an optical medium. P. 179–187
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Zemlyanov A. A., Minina O. V. The condition of collapse stopping during propagation of high-power femtosecond laser pulses in an optical medium. // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 179–187. DOI: 10.15372/AOO20230303 [in Russian].
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Zemlyanov A.A., Minina O.V. Condition for Stopping the Collapse of High-Power Femtosecond Laser Pulses during Propagation through an Optical Medium // Atmospheric and Oceanic Optics, 2023, V. 36. No. 04. pp. 314–322.
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4. Astafurov V. G., Skorokhodov A. V., Kuriyanovich K. V. Variability of parameters of single-layer cloud fields over Western Siberia in summer for the period from 2001 to 2019 according to MODIS data. P. 188–195
Bibliographic reference:
Astafurov V. G., Skorokhodov A. V., Kuriyanovich K. V. Variability of parameters of single-layer cloud fields over Western Siberia in summer for the period from 2001 to 2019 according to MODIS data. // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 188–195. DOI: 10.15372/AOO20230304 [in Russian].
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Astafurov V.G., Skorokhodov A.V., Kuryanovich K.V. Variability of Parameters of Single-Layer Cloud Fields over Western Siberia in Summer for the Period from 2001 to 2019 According to MODIS Data // Atmospheric and Oceanic Optics, 2023, V. 36. No. 04. pp. 329–336.
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5. Akperov M. G., Eliseev A. V. Wind energy potential of the high latitudes of the Northern Hemisphere under modern climatic changes
 
. P. 196–199
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Akperov M. G., Eliseev A. V. Wind energy potential of the high latitudes of the Northern Hemisphere under modern climatic changes
 . // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 196–199. DOI: 10.15372/AOO20230305 [in Russian].
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Akperov M.G., Eliseev A.V. Wind Energy Potential of High Latitudes of the Northern Hemisphere under Modern Climate Changes // Atmospheric and Oceanic Optics, 2023, V. 36. No. 04. pp. 363–369.
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6. Zorkal’tseva O. S., Antokhina O. Yu., Аntokhin P. N. Long-term variability of parameters of sudden stratospheric warmings according to ERA5 reanalysis data. P. 200–208
Bibliographic reference:
Zorkal’tseva O. S., Antokhina O. Yu., Аntokhin P. N. Long-term variability of parameters of sudden stratospheric warmings according to ERA5 reanalysis data. // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 200–208. DOI: 10.15372/AOO20230306 [in Russian].
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Zorkaltseva O.S., Antokhina O.Yu., Antokhin P.N. Long-Term Variations in Parameters of Sudden Stratospheric Warmings According to ERA5 Reanalysis Data // Atmospheric and Oceanic Optics, 2023, V. 36. No. 04. pp. 370–378.
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7. Nasrtdinov I. M., Zenkova P. N., Zhuravleva T. B., Uzhegov V. N., Konovalov I. B. Simulation of radiative forcing of smoke aerosol in the Arctic using measurements in the large aerosol chamber of Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Sciences. P. 209–213
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Nasrtdinov I. M., Zenkova P. N., Zhuravleva T. B., Uzhegov V. N., Konovalov I. B. Simulation of radiative forcing of smoke aerosol in the Arctic using measurements in the large aerosol chamber of Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Sciences. // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 209–213. DOI: 10.15372/AOO20230307 [in Russian].
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Nasrtdinov I.M., Zenkova P.N., Zhuravleva T.B., Uzhegov V.N. Konovalov I.B. Simulation of Radiative Forcing of Smoke Aerosol in the Arctic Using Measurements in the Large Aerosol Chamber of Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Sciences // Atmospheric and Oceanic Optics, 2023, V. 36. No. 04. pp. 379–383.
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8. Russkova T. V., Shishko V. A. Statistical simulation of laser pulse propagation in cirrus clouds with accounting for multiple scattering. P. 214–223
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Russkova T. V., Shishko V. A. Statistical simulation of laser pulse propagation in cirrus clouds with accounting for multiple scattering. // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 214–223. DOI: 10.15372/AOO20230308 [in Russian].
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Russkova T.V., Shishko V.A. Statistical Simulation of Laser Pulse Propagation in Cirrus Clouds Accounting for Multiple Scattering // Atmospheric and Oceanic Optics, 2023, V. 36. No. 04. pp. 384–393.
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9. Mershavka A. D., Repina I. A., Makarov R. D., Denisov E. A., Ivakhov V. M., Lykov A. D. Applicability of semiconductor methane sensors to measurements of the methane emission from water body surface. P. 224–238
Bibliographic reference:
Mershavka A. D., Repina I. A., Makarov R. D., Denisov E. A., Ivakhov V. M., Lykov A. D. Applicability of semiconductor methane sensors to measurements of the methane emission from water body surface. // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 224–238. DOI: 10.15372/AOO20230309 [in Russian].
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Mershavka A.D., Repina I.A. Makarov R.D., Denisov E.A., Ivakhov V.M., Lykov A.D. Applicability of Semiconductor Methane Sensors for Measuring Methane Emission from the Surface of a Water Body // Atmospheric and Oceanic Optics, 2023, V. 36. No. 04. pp. 400–414.
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10. Trigub M. V., Gembukh P. I., Vasnev N. A., Shiyanov D. V. Laser monitor for simultaneous imaging in the VIS and near-IR spectral ranges. P. 239–243
Bibliographic reference:
Trigub M. V., Gembukh P. I., Vasnev N. A., Shiyanov D. V. Laser monitor for simultaneous imaging in the VIS and near-IR spectral ranges. // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 239–243. DOI: 10.15372/AOO20230310 [in Russian].
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Trigub M.V., Gembukh P.I., Vasnev N.A., Shiyanov D.V. Laser Monitor for Simultaneous Imaging in the VIS and Near-IR Spectral Regions // Atmospheric and Oceanic Optics, 2023, V. 36. No. 04. pp. 415–420.
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11. Yurin A. I., Vishnyakov G. N., Minaev V. L. Seawater salinity estimation from measuring the refractive index. P. 244–248
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Yurin A. I., Vishnyakov G. N., Minaev V. L. Seawater salinity estimation from measuring the refractive index. // Optika Atmosfery i Okeana. 2023. V. 36. No. 03. P. 244–248. DOI: 10.15372/AOO20230311 [in Russian].
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Yurin A.I., Vishnyakov G.N., Minaev V.L. Determination of Seawater Salinity by Measurements of the Refractive Index // Atmospheric and Oceanic Optics, 2023, V. 36. No. 04. pp. 421–425.
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