Content of issue 12, volume 36, 2023

1. Vasil’chenko S. S., Solodov A. A., Egorov O. V., Tyuterev Vl. G. Experimental investigation and modeling of the singlet-triplet rovibronic bands of ozone in the region of 11900–12800 cm-1. P. 961-969
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Vasil’chenko S. S., Solodov A. A., Egorov O. V., Tyuterev Vl. G. Experimental investigation and modeling of the singlet-triplet rovibronic bands of ozone in the region of 11900–12800 cm-1. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 961-969. DOI: 10.15372/AOO20231201 [in Russian].
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Vasilchenko S.S., Solodov A.A., Egorov O.V. and Tyuterev V.G. Experimental Study and Simulation of Singlet-Triplet Rovibronic Ozone Bands in the 11 900–12 800 cm−1 Region // Atmospheric and Oceanic Optics, 2024, V. 37. No. 02. pp. 123–131.
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2. Rodimova O. B. Calculation of the absorption coefficient of the Ar-broadened CO2 in the 4.3 mm band wing on the basis of the asymptotic line wing theory. P. 970–974
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Rodimova O. B. Calculation of the absorption coefficient of the Ar-broadened CO2 in the 4.3 mm band wing on the basis of the asymptotic line wing theory. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 970–974. DOI: 10.15372/AOO20231202 [in Russian].
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Rodimova O.B. Calculation of the Absorption Coefficient of Ar-Broadened CO2 in the 4.3 μm Band Wing on the Basis of Asymptotic Line Wing Theory // Atmospheric and Oceanic Optics, 2024, V. 37. No. 02. pp. 162–165.
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3. Еrmakov A. N., Aloyan A. E., Arutyunyan V. O., Pronchev G. B. A new source of sulfates in the atmosphere. P. 975–981
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Еrmakov A. N., Aloyan A. E., Arutyunyan V. O., Pronchev G. B. A new source of sulfates in the atmosphere. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 975–981. DOI: 10.15372/AOO20231203 [in Russian].
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Yermakov A.N., Aloyan A.E., Arutyunyan V.O. and Pronchev G.B. A New Source of Sulfates in the Atmosphere // Atmospheric and Oceanic Optics, 2024, V. 37. No. 02. pp. 166–173.
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4. Tentyukov M. P., Belan B. D., Simonenkov D. V., Patov S. A., Mikhailov V. I., Simonova G. V., Plyusnin S. N., Bobrov Yu. A. Lichen exometabolites as possible precursors of secondary organic aerosols. P. 982–990
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Tentyukov M. P., Belan B. D., Simonenkov D. V., Patov S. A., Mikhailov V. I., Simonova G. V., Plyusnin S. N., Bobrov Yu. A. Lichen exometabolites as possible precursors of secondary organic aerosols. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 982–990. DOI: 10.15372/AOO20231204 [in Russian].
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Tentyukov M.P., Belan B.D., Simonenkov D.V., Patov S.A., Mikhailov V.I., Simonova G.V., Plyusnin S.N. and Bobrov Yu.A. Lichen Exometabolites as Possible Precursors of Secondary Organic Aerosols // Atmospheric and Oceanic Optics, 2024, V. 37. No. 02. pp. 174–182.
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5. Rozanov A. P., Zаdvornykh I. V., Gribanov K. G., Zakharov V. I. Estimates of CO2 flux into the forest ecosystem based on the results of ground-based hyperspectral sounding of the atmosphere and an artificial neural network model. P. 991–997
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Rozanov A. P., Zаdvornykh I. V., Gribanov K. G., Zakharov V. I. Estimates of CO2 flux into the forest ecosystem based on the results of ground-based hyperspectral sounding of the atmosphere and an artificial neural network model. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 991–997. DOI: 10.15372/AOO20231205 [in Russian].
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Rozanov A.P., Zadvornykh I.V., Gribanov K.G. and Zakharov V.I. Estimates of Carbon Dioxide Flux into the Forest Ecosystem Based on Results of Ground-Based Hyperspectral Sounding of the Atmosphere and an Artificial Neural Network Model // Atmospheric and Oceanic Optics, 2024, V. 37. No. 02. pp. 199–204.
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6. Rostovtseva V. V., Izhitskiy A. S., Konovalov B. V. Characterization of different water types in the Kerch Strait based on shipborne remote optical measurements. P. 998–1004
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Rostovtseva V. V., Izhitskiy A. S., Konovalov B. V. Characterization of different water types in the Kerch Strait based on shipborne remote optical measurements. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 998–1004. DOI: 10.15372/AOO20231206 [in Russian].
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7. Arshinov M. Yu., Belan B. D., Davydov D. K., Simonenkov D. V., Fofonov A. V. Carbon dioxide emissions from rivers in Western Siberia. P. 1005–1012
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Arshinov M. Yu., Belan B. D., Davydov D. K., Simonenkov D. V., Fofonov A. V. Carbon dioxide emissions from rivers in Western Siberia. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 1005–1012. DOI: 10.15372/AOO20231207 [in Russian].
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Arshinov M.Yu., Belan B.D., Davydov D.K., Simonenkov D.V. and Fofonov A.V. Carbon Dioxide Emissions from Freshwater Systems in Western Siberia // Atmospheric and Oceanic Optics, 2024, V. 37. No. 02. pp. 236–243.
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8. Konoshonkin A. V., Kustova N. V., Shishko V. A., Timofeev D. N., Tkachev I. V., Bakute E., Babinovich A. E., Zhu X., Wang Zhenzhu. Properties of light backscattering on hollow hexagonal ice columns for optical models of cirrus clouds. P. 1013–1019
Bibliographic reference:
Konoshonkin A. V., Kustova N. V., Shishko V. A., Timofeev D. N., Tkachev I. V., Bakute E., Babinovich A. E., Zhu X., Wang Zhenzhu. Properties of light backscattering on hollow hexagonal ice columns for optical models of cirrus clouds. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 1013–1019. DOI: 10.15372/AOO20231208 [in Russian].
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Konoshonkin A.V., Kustova N.V., Shishko V.A., Timofeev D.N., Tkachev I.V., Bakute E., Babinovich A.E., Zhu X. and Wang Z. Properties of Light Backscattering on Hollow Hexagonal Ice Columns for Optical Models of Cirrus Clouds // Atmospheric and Oceanic Optics, 2024, V. 37. No. 02. pp. 252–261.
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9. Popik A. Yu., Gamayunov E. L., Voznesenskii S. S. Automated system for the analysis of fluorescent characteristics of microalgae monocultures. P. 1020–1026
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Popik A. Yu., Gamayunov E. L., Voznesenskii S. S. Automated system for the analysis of fluorescent characteristics of microalgae monocultures. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 1020–1026. DOI: 10.15372/AOO20231209 [in Russian].
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10. Troitskii V. O. Effect of laser beam amplitude profile on second harmonic generation efficiency. P. 1027–1037
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Troitskii V. O. Effect of laser beam amplitude profile on second harmonic generation efficiency. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 1027–1037. DOI: 10.15372/AOO20231210 [in Russian].
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Troitskii V.O. Effect of Laser Beam Amplitude Profile on Second Harmonic Generation Efficiency // Atmospheric and Oceanic Optics, 2024, V. 37. No. 02. pp. 271–280.
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11. Pestunov D. A., Shamrin A. M., Domysheva V. M., Sakirko M. V., Panchenko M. V. Spatial distribution of methane concentration in Baikal surface water in spring period. P. 1038–1045
Bibliographic reference:
Pestunov D. A., Shamrin A. M., Domysheva V. M., Sakirko M. V., Panchenko M. V. Spatial distribution of methane concentration in Baikal surface water in spring period. // Optika Atmosfery i Okeana. 2023. V. 36. No. 12. P. 1038–1045. DOI: 10.15372/AOO20231211 [in Russian].
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Pestunov D.A., Shamrin A.M., Domysheva V.M., Sakirko M.V. and Panchenko M.V. Spatial Distribution of Methane Concentration in Baikal Surface Water in the Spring Period // Atmospheric and Oceanic Optics, 2024, V. 37. No. 02. pp. 281–290.
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12. Author Index. P. 1046–1048