Content of issue 01, volume 39, 2026

1. Rodimova O. B. The CO2 absorption coefficient in band wings at low temperatures. P. 5–10
Bibliographic reference:
Rodimova O. B. The CO2 absorption coefficient in band wings at low temperatures. // Optika Atmosfery i Okeana. 2026. V. 39. No. 01. P. 5–10. DOI: 10.15372/AOO20260101 [in Russian].
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2. Kalinskaya D. V. Optical characteristics of atmospheric aerosol over the Volga River and the Black Sea in dust transport periods. P. 11–20
Bibliographic reference:
Kalinskaya D. V. Optical characteristics of atmospheric aerosol over the Volga River and the Black Sea in dust transport periods. // Optika Atmosfery i Okeana. 2026. V. 39. No. 01. P. 11–20. DOI: 10.15372/AOO20260102 [in Russian].
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3. Apeksimov D. V., Bаbushkin P. A., Geints Yu. E., Kabanov A. M., Oshlakov V. K., Khoroshaeva E. E. Enhancement of the efficiency of generating radiation at shifted wavelengths by transforming a single-mode femtosecond laser beam into multimode one. P. 21–26
Bibliographic reference:
Apeksimov D. V., Bаbushkin P. A., Geints Yu. E., Kabanov A. M., Oshlakov V. K., Khoroshaeva E. E. Enhancement of the efficiency of generating radiation at shifted wavelengths by transforming a single-mode femtosecond laser beam into multimode one. // Optika Atmosfery i Okeana. 2026. V. 39. No. 01. P. 21–26. DOI: 10.15372/AOO20260103 [in Russian].
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4. Drakon A. V., Eremin A. V., Kolotushkin R. N., Timoshenko A. A.., Khodyko E. S. Mass spectrometric study of primary aerosol origination in an ethylene/air flame. P. 27–36
Bibliographic reference:
Drakon A. V., Eremin A. V., Kolotushkin R. N., Timoshenko A. A.., Khodyko E. S. Mass spectrometric study of primary aerosol origination in an ethylene/air flame. // Optika Atmosfery i Okeana. 2026. V. 39. No. 01. P. 27–36. DOI: 10.15372/AOO20260104 [in Russian].
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5. Tronin A. A., Vasiliev M. P., Nerobelov G. M. Comparison of nitrogen and sulfur dioxides mixing ratio in the atmosphere of Moscow and St. Petersburg according to satellite and ground-based data. P. 37–41
Bibliographic reference:
Tronin A. A., Vasiliev M. P., Nerobelov G. M. Comparison of nitrogen and sulfur dioxides mixing ratio in the atmosphere of Moscow and St. Petersburg according to satellite and ground-based data. // Optika Atmosfery i Okeana. 2026. V. 39. No. 01. P. 37–41. DOI: 10.15372/AOO20260105 [in Russian].
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6. Antokhina O. Yu., Аntokhin P. N., Zorkal’tseva O. S., Gochakov A. V., Artamonov M. F., Bobrovnikov S. M., Zharkov V. I. Dynamics of the stratospheric polar vortex in winter 2024/2025: the role of wave processes and connection with tropospheric circulation. P. 42–52
Bibliographic reference:
Antokhina O. Yu., Аntokhin P. N., Zorkal’tseva O. S., Gochakov A. V., Artamonov M. F., Bobrovnikov S. M., Zharkov V. I. Dynamics of the stratospheric polar vortex in winter 2024/2025: the role of wave processes and connection with tropospheric circulation. // Optika Atmosfery i Okeana. 2026. V. 39. No. 01. P. 42–52. DOI: 10.15372/AOO20260106 [in Russian].
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7. Pustovalov K. N., Nagorsky P. M., Oglezneva M. V., Smirnov S. V. Variability of surface electric field and the UV transmittance coefficient of clouds depending on the cloud form. P. 53–58
Bibliographic reference:
Pustovalov K. N., Nagorsky P. M., Oglezneva M. V., Smirnov S. V. Variability of surface electric field and the UV transmittance coefficient of clouds depending on the cloud form. // Optika Atmosfery i Okeana. 2026. V. 39. No. 01. P. 53–58. DOI: 10.15372/AOO20260107 [in Russian].
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8. Gladkikh V. A., Kamardin A. P., Nevzorova I. V., Odintsov S. L., Fedorov V. A. Correlation of the outer scales of temperature and wind turbulence with temperature and wind speed stratification in the surface air layer. P. 59–65
Bibliographic reference:
Gladkikh V. A., Kamardin A. P., Nevzorova I. V., Odintsov S. L., Fedorov V. A. Correlation of the outer scales of temperature and wind turbulence with temperature and wind speed stratification in the surface air layer. // Optika Atmosfery i Okeana. 2026. V. 39. No. 01. P. 59–65. DOI: 10.15372/AOO20260108 [in Russian].
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9. Shikhovtsev M. Yu., Shikhovtsev A. Yu., Lezhenin A. A., Gradov V. S., Khaikin V. B., Kirichenko K. E., Kovadlo P. G. Application of the WRF model to estimation of the precipitable water vapor over the Sayan Solar Observatory and Khulugaysha Peak. P. 66–72
Bibliographic reference:
Shikhovtsev M. Yu., Shikhovtsev A. Yu., Lezhenin A. A., Gradov V. S., Khaikin V. B., Kirichenko K. E., Kovadlo P. G. Application of the WRF model to estimation of the precipitable water vapor over the Sayan Solar Observatory and Khulugaysha Peak. // Optika Atmosfery i Okeana. 2026. V. 39. No. 01. P. 66–72. DOI: 10.15372/AOO20260109 [in Russian].
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10. Antonovich V. V., Аntokhin P. N., Arshinova V. G., Arshinov M. Yu., Belan B. D., Belan S. B., Davydov D. K., Dudorova N. V., Ivlev G. A., Kozlov A. V., Kolotkov G. A., Rasskazchikova T. M., Savkin D. E., Simonenkov D. V., Sklyadneva T. K., Tolmachev G. N., Fofonov A. V. Dynamics of radon and thoron concentrations in the surface air layer at the “Fonovaya" observatory. P. 73–79
Bibliographic reference:
Antonovich V. V., Аntokhin P. N., Arshinova V. G., Arshinov M. Yu., Belan B. D., Belan S. B., Davydov D. K., Dudorova N. V., Ivlev G. A., Kozlov A. V., Kolotkov G. A., Rasskazchikova T. M., Savkin D. E., Simonenkov D. V., Sklyadneva T. K., Tolmachev G. N., Fofonov A. V. Dynamics of radon and thoron concentrations in the surface air layer at the “Fonovaya" observatory. // Optika Atmosfery i Okeana. 2026. V. 39. No. 01. P. 73–79. DOI: 10.15372/AOO20260110 [in Russian].
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11. Information. P. 80
12. Personalia. P. 81–82