Content of issue 07, volume 37, 2024

1. Borkov Yu. G., Sulakshina O. N., Serdyukov V. I., Sinitsa L. N. Spectrum of 14N17O isotopologue in the region 5200–5550 cm-1. Spectroscopic parameters for v = 3 state. P. 539–545
Bibliographic reference:
Borkov Yu. G., Sulakshina O. N., Serdyukov V. I., Sinitsa L. N. Spectrum of 14N17O isotopologue in the region 5200–5550 cm-1. Spectroscopic parameters for v = 3 state. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 539–545. DOI: 10.15372/AOO20240701 [in Russian].
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Borkov Yu.G., Sulakshina O.N., Serdyukov V.I., Sinitsa L.N. Spectrum of 14N17O Isotopologue in the 5200–5550 cm−1 Region: Spectroscopic Parameters for n = 3 State // Atmospheric and Oceanic Optics, 2024, V. 37. No. 05. pp. 577–584.
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2. Sinitsa L. N., Serdyukov V. I., Nevzorova T.A., Dudaryonok A. S., Lavrentieva N. N. Measurements and calculations of the coefficients of N2O line broadening and shift by air pressure in the (0002) ← (0000) band. P. 546–553
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Sinitsa L. N., Serdyukov V. I., Nevzorova T.A., Dudaryonok A. S., Lavrentieva N. N. Measurements and calculations of the coefficients of N2O line broadening and shift by air pressure in the (0002) ← (0000) band. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 546–553. DOI: 10.15372/AOO20240702 [in Russian].
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Sinitsa L.N., Serdyukov V.I., Nevzorova T.A., Dudaryonok A.S., Lavrentieva N.N. Measurements and Calculations of the Coefficients of N2O Line Broadening and Shift by Air Pressure in the (0002) ← (0000) Band // Atmospheric and Oceanic Optics, 2024, V. 37. No. 05. pp. 585–592.
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3. Sharybkina K. K., Naumenko O. V. Vibrational energy levels for sulfur dioxide isotopologues. P. 554–562
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Sharybkina K. K., Naumenko O. V. Vibrational energy levels for sulfur dioxide isotopologues. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 554–562. DOI: 10.15372/AOO20240703 [in Russian].
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Sharybkina K.K., Naumenko O.V. Vibrational Energy Levels for Sulfur Dioxide Isotopologues // Atmospheric and Oceanic Optics, 2024, V. 37. No. 05. pp. 593–604.
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4. Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. Determination of the type of atmospheric turbulence from meteorological measurements in operational mode. P. 563–571
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Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. Determination of the type of atmospheric turbulence from meteorological measurements in operational mode. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 563–571. DOI: 10.15372/AOO20240704 [in Russian].
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Nosov V.V., Lukin V.P., Nosov E.V., Torgaev A.V. Determination of Atmospheric Turbulence Type from Operational Meteorological Measurements // Atmospheric and Oceanic Optics, 2024, V. 37. No. 05. pp. 605–613.
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5. Shul’ga T. Ya., Suslin V. V. Seasonal variability of the main optically active components of the marine environment according to remote sensing and simulation data. P. 572–577
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Shul’ga T. Ya., Suslin V. V. Seasonal variability of the main optically active components of the marine environment according to remote sensing and simulation data. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 572–577. DOI: 10.15372/AOO20240705 [in Russian].
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Shul’ga T.Ya., Suslin V.V. Seasonal Variability of the Main Optically Active Components of the Marine Environment According to Remote Sensing and Simulation Data // Atmospheric and Oceanic Optics, 2024, V. 37. No. 05. pp. 666–574.
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6. Gruzdev A. N., Elokhov A. S. Comparison of atmospheric nitrogen dioxide content data derived from satellite (OMI) and ground-based (NDACC) measurements. P. 578–586
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Gruzdev A. N., Elokhov A. S. Comparison of atmospheric nitrogen dioxide content data derived from satellite (OMI) and ground-based (NDACC) measurements. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 578–586. DOI: 10.15372/AOO20240706 [in Russian].
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Gruzdev A.N., Elokhov A.S. Comparison of Atmospheric Nitrogen Dioxide Content Data Derived from Satellite (OMI) and Ground-Based (NDACC) Measurements // Atmospheric and Oceanic Optics, 2024, V. 37. No. 05. pp. 675–683.
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7. Alexeeva M. N., Pustovalov K. N., Golovatskaya E. A., Yashchenko I. G. Monitoring the content of carbon monoxide in the atmosphere of oil and gas producing regions of Khanty-Mansi Autonomous Okrug using satellite data MOPPIT. P. 587–593
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Alexeeva M. N., Pustovalov K. N., Golovatskaya E. A., Yashchenko I. G. Monitoring the content of carbon monoxide in the atmosphere of oil and gas producing regions of Khanty-Mansi Autonomous Okrug using satellite data MOPPIT. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 587–593. DOI: 10.15372/AOO20240707 [in Russian].
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8. Firsov K. M., Chesnokova T. Yu., Razmolov A. A. The atmospheric water vapor content effect on carbon dioxide and methane radiative forcing in the troposphere and stratosphere. P. 594–601
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Firsov K. M., Chesnokova T. Yu., Razmolov A. A. The atmospheric water vapor content effect on carbon dioxide and methane radiative forcing in the troposphere and stratosphere. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 594–601. DOI: 10.15372/AOO20240708 [in Russian].
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Firsov K.M., Chesnokova T.Yu., Razmolov A.A. The Atmospheric Water Vapor Content Effect on Carbon Dioxide and Methane Radiative Forcing in the Troposphere and Stratosphere // Atmospheric and Oceanic Optics, 2024, V. 37. No. 05. pp. 689–697.
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9. Loboda E. L., Razenkov I. A., Agafontsev M. V., Reino V. V. Study of the effect of a wildfire on the local characteristics of the atmosphere using remote sensing methods. P. 602–608
Bibliographic reference:
Loboda E. L., Razenkov I. A., Agafontsev M. V., Reino V. V. Study of the effect of a wildfire on the local characteristics of the atmosphere using remote sensing methods. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 602–608. DOI: 10.15372/AOO20240709 [in Russian].
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Loboda E.L., Razenkov I.A., Agafontsev M.V., Reyno V.V. Study of the Wildfire Effect on Local Atmospheric Parameters using Remote Sensing Techniques // Atmospheric and Oceanic Optics, 2024, V. 37. No. 05. pp. 725–731.
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10. Bobrovnikov S. M., Gorlov E. V., Zharkov V. I., Murashko S. N. Two-pulse laser fragmentation/laser-induced fluorescence of an organophosphate aerosol. P. 609–614
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Bobrovnikov S. M., Gorlov E. V., Zharkov V. I., Murashko S. N. Two-pulse laser fragmentation/laser-induced fluorescence of an organophosphate aerosol. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 609–614. DOI: 10.15372/AOO20240710 [in Russian].
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Bobrovnikov S.M., Gorlov E.V., Zharkov V.I., Murashko S.N. Two-Pulse Laser Fragmentation/Laser-Induced Fluorescence of Organophosphate Aerosol // Atmospheric and Oceanic Optics, 2024, V. 37. No. 05. pp. 732–737.
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11. Znamenskii I. V., Tikhomirov A. A., Tungushpaev A. Т. Reducing the pointing error of a space surveillance system for monitoring man-made objects. P. 615–619
Bibliographic reference:
Znamenskii I. V., Tikhomirov A. A., Tungushpaev A. Т. Reducing the pointing error of a space surveillance system for monitoring man-made objects. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 615–619. DOI: 10.15372/AOO20240711 [in Russian].
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12. Maslennikova E. A., Zuev V. V., Saveljeva E. S., Pavlinskii A. V. Activity of high cyclones above Erebus volcano according to ERA5 reanalysis data. P. 620–623
Bibliographic reference:
Maslennikova E. A., Zuev V. V., Saveljeva E. S., Pavlinskii A. V. Activity of high cyclones above Erebus volcano according to ERA5 reanalysis data. // Optika Atmosfery i Okeana. 2024. V. 37. No. 07. P. 620–623. DOI: 10.15372/AOO20240712 [in Russian].
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Maslennikova E.A., Zuev V.V., Savelieva E. S., Pavlinsky A.V. Activity of High Cyclones above Erebus Volcano According to ERA5 Reanalysis Data // Atmospheric and Oceanic Optics, 2024, V. 37. No. 05. pp. 738–741.
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13. Information. P. 624