Content of issue 09, volume 36, 2023

1. Geints Yu. E., Panina E. K. Peculiarities of photonic nanojet formation on a spherical cluster of dielectric nanoparticles. P. 705-710
Bibliographic reference:
Geints Yu. E., Panina E. K. Peculiarities of photonic nanojet formation on a spherical cluster of dielectric nanoparticles. // Optika Atmosfery i Okeana. 2023. V. 36. No. 09. P. 705-710. DOI: 10.15372/AOO20230901 [in Russian].
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Geints Yu.E. and Panina E.K. Characteristics of Photonic Nanojet Formation on a Spherical Cluster of Dielectric Nanoparticles Vapors // Atmospheric and Oceanic Optics, 2023, V. 36. No S1. pp. S27–S32.
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2. Yausheva E. P., Gladkikh V. A., Kamardin A. P., Shmargunov V. P. Extreme events of aerosol pollution of the atmosphere in winter in Tomsk Academgorodok. P. 711-717
Bibliographic reference:
Yausheva E. P., Gladkikh V. A., Kamardin A. P., Shmargunov V. P. Extreme events of aerosol pollution of the atmosphere in winter in Tomsk Academgorodok. // Optika Atmosfery i Okeana. 2023. V. 36. No. 09. P. 711-717. DOI: 10.15372/AOO20230902 [in Russian].
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Yausheva E.P., Gladkikh V.A., Kamardin A.P. and Shmargunov V.P. Extreme Events of Aerosol Pollution of the Atmosphere in Winter in Tomsk Akademgorodok // Atmospheric and Oceanic Optics, 2023, V. 36. No S1. pp. S65–S73.
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3. Burlov V. G., Ostrikov V. N., Kirienko A. V., Plakhotnikov O. V. Simulation model for the identification of environmental pollution from hyperspectral imagery in the visible range. P. 718-724
Bibliographic reference:
Burlov V. G., Ostrikov V. N., Kirienko A. V., Plakhotnikov O. V. Simulation model for the identification of environmental pollution from hyperspectral imagery in the visible range. // Optika Atmosfery i Okeana. 2023. V. 36. No. 09. P. 718-724. DOI: 10.15372/AOO20230903.
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4. Nasonov S. V., Balin Yu. S., Klemasheva M. G., Kokhanenko G. P., Nasonova A. S., Novoselov M. M., Penner I. E. Synchronous lidar observations of the spatiotemporal structure of atmospheric aerosol in the coastal zone of Lake Baikal. P. 725-732
Bibliographic reference:
Nasonov S. V., Balin Yu. S., Klemasheva M. G., Kokhanenko G. P., Nasonova A. S., Novoselov M. M., Penner I. E. Synchronous lidar observations of the spatiotemporal structure of atmospheric aerosol in the coastal zone of Lake Baikal. // Optika Atmosfery i Okeana. 2023. V. 36. No. 09. P. 725-732. DOI: 10.15372/AOO20230904 [in Russian].
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5. Pustovalov K. N., Kharyutkina E. V., Moraru E. I. Variability of the cloud base height over the territory of Western Siberia based on laser sounding data for the period 2010–2021. P. 733-741
Bibliographic reference:
Pustovalov K. N., Kharyutkina E. V., Moraru E. I. Variability of the cloud base height over the territory of Western Siberia based on laser sounding data for the period 2010–2021. // Optika Atmosfery i Okeana. 2023. V. 36. No. 09. P. 733-741. DOI: 10.15372/AOO20230905 [in Russian].
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Pustovalov K.N., Kharyutkina E.V. and Moraru E.I. Variability of the Cloud Base Height over the Territory of Western Siberia Based on Laser Sounding Data for the Period 2010–2021 // Atmospheric and Oceanic Optics, 2023, V. 36. No S1. pp. S41–S50.
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6. Kamardin A. P., Gladkikh V. A., Nevzorova I. V., Odintsov S. L. Statistics of air temperature inversions in the atmospheric boundary layer over Tomsk. P. 742–753
Bibliographic reference:
Kamardin A. P., Gladkikh V. A., Nevzorova I. V., Odintsov S. L. Statistics of air temperature inversions in the atmospheric boundary layer over Tomsk. // Optika Atmosfery i Okeana. 2023. V. 36. No. 09. P. 742–753. DOI: 10.15372/AOO20230906 [in Russian].
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7. Sinitsa L. N., Chesnokova T. Yu. Analysis of water vapor absorption lines in the modern spectroscopic databases in the 16700–17000 cm-1 region. P. 754-762
Bibliographic reference:
Sinitsa L. N., Chesnokova T. Yu. Analysis of water vapor absorption lines in the modern spectroscopic databases in the 16700–17000 cm-1 region. // Optika Atmosfery i Okeana. 2023. V. 36. No. 09. P. 754-762. DOI: 10.15372/AOO20230907 [in Russian].
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Sinitsa L.N. and Chesnokova T.Yu. Analysis of Water Vapor Absorption Lines in Modern Spectroscopic Databases in the 16 700–17 000 cm−1 Region // Atmospheric and Oceanic Optics, 2023, V. 36. No S1. pp. S78–S86.
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8. Zinoviev M. M., Kuznetsov V. S., Yudin N. N., Podzyvalov S. N., Slyunko E. S., Lysenko A. B., Kalsin A. Yu., Vlasov D. V., Cheremis M. A. Dielectric polarizing mirror for OPO systems in the mid-IR range. P. 763-772
Bibliographic reference:
Zinoviev M. M., Kuznetsov V. S., Yudin N. N., Podzyvalov S. N., Slyunko E. S., Lysenko A. B., Kalsin A. Yu., Vlasov D. V., Cheremis M. A. Dielectric polarizing mirror for OPO systems in the mid-IR range. // Optika Atmosfery i Okeana. 2023. V. 36. No. 09. P. 763-772. DOI: 10.15372/AOO20230908 [in Russian].
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9. Bol'basova L. A., Ermakov S. A., Lukin V. P. Simulation of sodium LGS return flux formed by polarized light for astronomical observatories of the North Caucasus. P. 773–779
Bibliographic reference:
Bol'basova L. A., Ermakov S. A., Lukin V. P. Simulation of sodium LGS return flux formed by polarized light for astronomical observatories of the North Caucasus. // Optika Atmosfery i Okeana. 2023. V. 36. No. 09. P. 773–779. DOI: 10.15372/AOO20230909 [in Russian].
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Bolbasova L.A., Ermakov S.A. and Lukin V.P. Simulation of Return Flux of Sodium LGS Generated by Polarized Light for Astronomical Observatories of the North Caucasus // Atmospheric and Oceanic Optics, 2023, V. 36. No S1. pp. S94–S100.
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10. Banakh V. A., Falits A. V., Zaloznaya I. V. Redistribution of optical radiation energy along paths with reflection in a turbulent atmosphere. P. 780-783
Bibliographic reference:
Banakh V. A., Falits A. V., Zaloznaya I. V. Redistribution of optical radiation energy along paths with reflection in a turbulent atmosphere. // Optika Atmosfery i Okeana. 2023. V. 36. No. 09. P. 780-783. DOI: 10.15372/AOO20230910 [in Russian].
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Banakh V.A., Falits A.V. and Zaloznaya I.V. Redistribution of Optical Radiation Energy when Reflecting in a Turbulent Atmosphere // Atmospheric and Oceanic Optics, 2023, V. 36. No S1. pp. S101–104.
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