Content of issue 05, volume 37, 2024

1. The 300th anniversary of the Russian Academy of Sciences. P. 353–354
2. Vasilenko I. A., Naumenko O. V. Expert assessment of the accuracy of determining the intensity of vibrational-rotational lines of water vapor in the HITRAN database in the range 2500–6500 cm-1. P. 363–369
Bibliographic reference:
Vasilenko I. A., Naumenko O. V. Expert assessment of the accuracy of determining the intensity of vibrational-rotational lines of water vapor in the HITRAN database in the range 2500–6500 cm-1. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 363–369. DOI: 10.15372/AOO20240501 [in Russian].
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Vasilenko I.A., Naumenko O.V. Expert Assessment of the Accuracy of Determining the Intensities of Vibrational-rotational Lines of Water Vapor in the HITRAN Database in the Range 2500–6500 m–1 // Atmospheric and Oceanic Optics, 2024, V. 37. No. 04. pp. 461–468.
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3. Starikov V. I., Petrova T. M., Solodov A. M., Solodov A. A., Dеichuli V. M. Wind effect in H2O absorption lines perturbed by He, Ar, Kr, and Xe pressure. P. 363–369
Bibliographic reference:
Starikov V. I., Petrova T. M., Solodov A. M., Solodov A. A., Dеichuli V. M. Wind effect in H2O absorption lines perturbed by He, Ar, Kr, and Xe pressure. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 363–369. DOI: 10.15372/AOO20240502 [in Russian].
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Starikov V.I., Petrova T.M., Solodov A.M., Solodov A.A., Deichuli V.M. Wind Effect on H2O Absorption Lines Perturbed by He, Ar, Kr, and Xe Pressure // Atmospheric and Oceanic Optics, 2024, V. 37. No. 04. pp. 469–475.
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4. Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. Surface turbulence in the Sayan Solar Observatory in summer 2023. P. 370–376
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Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. Surface turbulence in the Sayan Solar Observatory in summer 2023. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 370–376. DOI: 10.15372/AOO20240503 [in Russian].
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Nosov V.V., Lukin V.P., Nosov E.V., Torgaev A.V. Ground-Level Atmospheric Turbulence in the Sayan Solar Observatory in Summer 2023 // Atmospheric and Oceanic Optics, 2024, V. 37. No. 04.
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5. Dudorova N. V., Belan B. D. Effect of fine aerosols in urban air on the frequency of hospitalizations for respiratory diseases. P. 377–385
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Dudorova N. V., Belan B. D. Effect of fine aerosols in urban air on the frequency of hospitalizations for respiratory diseases. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 377–385. DOI: 10.15372/AOO20240504 [in Russian].
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6. Kustova N. V., Konoshonkin A. V., Borovoy A. G. Polarization surges near the backscattering direction for a single randomly oriented particle with an irregular shape. P. 386–392
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Kustova N. V., Konoshonkin A. V., Borovoy A. G. Polarization surges near the backscattering direction for a single randomly oriented particle with an irregular shape. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 386–392. DOI: 10.15372/AOO20240505 [in Russian].
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7. Razenkov I. A., Belan B. D., Мikhаl’chishin А. V., Ivlev G. A. The use of turbulent lidar for aviation safety. P. 393–402
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Razenkov I. A., Belan B. D., Мikhаl’chishin А. V., Ivlev G. A. The use of turbulent lidar for aviation safety. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 393–402. DOI: 10.15372/AOO20240506 [in Russian].
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Razenkov I.A., Belan B.D., Mikhal’chishin A.V., Ivlev G.A. The Use of the Turbulent Lidar for Aviation Safety // Atmospheric and Oceanic Optics, 2024, V. 37. No. 04. pp. 492–501.
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8. Nikolashkin S. V., Koltovskoi I. I., Ammosova A. M. Features of the wave structure of the mesosphere from observations of noctilucent clouds. P. 403–408
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Nikolashkin S. V., Koltovskoi I. I., Ammosova A. M. Features of the wave structure of the mesosphere from observations of noctilucent clouds. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 403–408. DOI: 10.15372/AOO20240507 [in Russian].
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Nikolashkin S.V., Koltovskoi I.I., Ammosova A.M. Features of the Wave Structure of the Mesosphere from Observations of Noctilucent Clouds // Atmospheric and Oceanic Optics, 2024, V. 37. No. 04. pp. 502–507.
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9. Zainetdinov B. G., Morozov V. N., Zaniukov V. V. The influence of aerosol on elements of global atmospheric electrical circuit. P. 409–414
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Zainetdinov B. G., Morozov V. N., Zaniukov V. V. The influence of aerosol on elements of global atmospheric electrical circuit. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 409–414. DOI: 10.15372/AOO20240508 [in Russian].
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Zainetdinov B.G., Morozov V.N., Zaniukov V.V. The Influence of Aerosol on Elements of Global Atmospheric Electrical Circuit // Atmospheric and Oceanic Optics, 2024, V. 37. No. 04. pp. 508–513.
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10. Antokhina O. Yu., Gochakov A. V., Zorkal’tseva O. S., Аntokhin P. N., Krupchatnikov V. N. Breaking of Rossby waves in the stratosphere. Part I. Climatology and long-term variability. P. 415–422
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Antokhina O. Yu., Gochakov A. V., Zorkal’tseva O. S., Аntokhin P. N., Krupchatnikov V. N. Breaking of Rossby waves in the stratosphere. Part I. Climatology and long-term variability. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 415–422. DOI: 10.15372/AOO20240509 [in Russian].
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Antokhina O.Yu., Gochakov A.V., Zorkaltseva O.S., Antokhin P.N., Krupchatnikov V.N. Rossby Wave Breaking in the Stratosphere: Part I–Climatology and Long-Term Variability // Atmospheric and Oceanic Optics, 2024, V. 37. No. 04. pp. 514–521.
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11. Okulicheva A. A., Ermakova T . S. Polar stratosphere dynamics during early sudden stratospheric warmings. P. 423–430
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Okulicheva A. A., Ermakova T . S. Polar stratosphere dynamics during early sudden stratospheric warmings. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 423–430. DOI: 10.15372/AOO20240510 [in Russian].
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Okulicheva A.A., Ermakova T.S. Polar Stratosphere Dynamics During Early Sudden Stratospheric Warmings // Atmospheric and Oceanic Optics, 2024, V. 37. No. 04. pp. 522–529.
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12. Kurbatova M. M., Ignatov R. Yu., Rubinshtein K. G. Universal procedure for lightning data assimilation in atmospheric numerical models of the atmosphere. P. 431–437
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Kurbatova M. M., Ignatov R. Yu., Rubinshtein K. G. Universal procedure for lightning data assimilation in atmospheric numerical models of the atmosphere. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 431–437. DOI: 10.15372/AOO20240511 [in Russian].
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Kurbatova M.M., Ignatov R.Yu., Rubinshtein K.G. Universal Procedure for Lightning Data Assimilation in Numerical Models of the Atmosphere // Atmospheric and Oceanic Optics, 2024, V. 37. No. 04. pp. 530–537.
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13. Tartakovsky V. A., Maksimov V. G., Krutikov V. A. Decomposition of the latitudinal variation in the  long-term average temperature using data from weather stations in the Northern Hemisphere and on astronomical insolation in 1897–2010. P. 438–444
Bibliographic reference:
Tartakovsky V. A., Maksimov V. G., Krutikov V. A. Decomposition of the latitudinal variation in the  long-term average temperature using data from weather stations in the Northern Hemisphere and on astronomical insolation in 1897–2010. // Optika Atmosfery i Okeana. 2024. V. 37. No. 05. P. 438–444. DOI: 10.15372/AOO20240512 [in Russian].
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Tartakovsky V.A., Maximov V.G., Krutikov V.A. Decomposition of the Latitudinal Variation in the Long-Term Average Temperature in the Northern Hemisphere in 1897–2010 Based on Measurements at Weather Stations and Data on Astronomical Insolation // Atmospheric and Oceanic Optics, 2024, V. 37. No. 04. pp. 538–546.
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