Content of issue 07, volume 34, 2021

1. Sinitsa L. N., Emelyanov N. M., Lugovskoy A. A., Shcherbakov A. P., Annenkov V. V. Determination of silica material pore sizes from IR spectra of adsorbed water. P. 483-487
Bibliographic reference:
Sinitsa L. N., Emelyanov N. M., Lugovskoy A. A., Shcherbakov A. P., Annenkov V. V. Determination of silica material pore sizes from IR spectra of adsorbed water. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 483-487. DOI: 10.15372/AOO20210701 [in Russian].
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Sinitsa L.N., Emel’yanov N.M., Shcherbakov A.P., Lugovskoi A.A. and Annenkov V.V. Estimation of Silica Material Pore Sizes from IR Spectra of Adsorbed Water // Atmospheric and Oceanic Optics, 2021, V. 34. No. 06. pp. 542–546.
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2. Kochanov V. P. Simplified theory of line broadening: dependence of spectral line parameters on speed and temperature. P. 488-501
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Kochanov V. P. Simplified theory of line broadening: dependence of spectral line parameters on speed and temperature. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 488-501. DOI: 10.15372/AOO20210702 [in Russian].
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Kochanov V.P. Simplified Theory of Line Broadening: Dependence of Spectral Line Parameters on Velocity and Temperature // Atmospheric and Oceanic Optics, 2021, V. 34. No. 06. pp. 528–541.
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3. Oshlakov V. K., Bаbushkin P. A., Matvienko G. G. Spatiotemporal characteristics of a laser pulse when focusing in a two-component medium. P. 502–506
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Oshlakov V. K., Bаbushkin P. A., Matvienko G. G. Spatiotemporal characteristics of a laser pulse when focusing in a two-component medium. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 502–506. DOI: 10.15372/AOO20210703 [in Russian].
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4. Geints Yu. E., Panina E. K., Minin O. V., Minin I. V. Light focusing by a Fresnel binary zone plate with various design features. P. 507–514
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Geints Yu. E., Panina E. K., Minin O. V., Minin I. V. Light focusing by a Fresnel binary zone plate with various design features. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 507–514. DOI: 10.15372/AOO20210704 [in Russian].
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Geints Yu.E., Panina E.K., Minin O.V. and Minin I.V. Light Focusing by a Binary Fresnel Zone Plate with Various Design Features // Atmospheric and Oceanic Optics, 2021, V. 34. No. 06. pp. 714–721.
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5. Sakerin S. M., Kabanov D. M., Kalashnikova D. A., Kruglinsky I. A., Makarov V. I., Novigatinsky A. N., Pol'kin V. V., Popova S. A., Pochyufarov A. O., Simonova G. V., Turchinovich Yu. S., Shevchenko V. P. Results of measuring the aerosol characteristics in 80th cruise of RV “Akademik Mstislav Keldysh” on the route from the Baltic Sea to the Barents Sea. P. 515–523
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Sakerin S. M., Kabanov D. M., Kalashnikova D. A., Kruglinsky I. A., Makarov V. I., Novigatinsky A. N., Pol'kin V. V., Popova S. A., Pochyufarov A. O., Simonova G. V., Turchinovich Yu. S., Shevchenko V. P. Results of measuring the aerosol characteristics in 80th cruise of RV “Akademik Mstislav Keldysh” on the route from the Baltic Sea to the Barents Sea. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 515–523. DOI: 10.15372/AOO20210705 [in Russian].
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Sakerin S.M., Kabanov D.M., Kalashnikova D.A., Kruglinsky I.A., Makarov V.I., Novigatinsky A.N., Polkin V.V., Popova S.A., Pochufarov A.O., Simonova G.V., Turchinovich Yu.S. and Shevchenko V.P. Measurements of Aerosol Physicochemical Characteristics in the 80th Cruise of RV Akademik Mstislav Keldysh on the Route from the Baltic to Barents Sea // Atmospheric and Oceanic Optics, 2021, V. 34. No. 05. pp. 455–463.
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6. Bazhenov O. E. Ozone anomaly during winter-spring 2019–2020 in the Arctic and over the north of Eurasia according to satellite (Aura MLS/OMI) observations. P. 524–529
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Bazhenov O. E. Ozone anomaly during winter-spring 2019–2020 in the Arctic and over the north of Eurasia according to satellite (Aura MLS/OMI) observations. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 524–529. DOI: 10.15372/AOO20210706 [in Russian].
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Bazhenov O.E. Ozone Anomaly during Winter–Spring 2019–2020 in the Arctic and over the North of Eurasia Using Satellite (Aura MLS/OMI) Observations // Atmospheric and Oceanic Optics, 2021, V. 34. No. 06. pp. 643–648.
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7. Raputa V. F., Lezhenin A. A. Estimation of the dynamic and thermal characteristics of the rise of a smoke plume from satellite information. P. 530–534
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Raputa V. F., Lezhenin A. A. Estimation of the dynamic and thermal characteristics of the rise of a smoke plume from satellite information. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 530–534. DOI: 10.15372/AOO20210707 [in Russian].
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Raputa V.F. and Lezhenin A.A. Estimation of the Dynamic and Thermal Characteristics of the Rise of a Smoke Plume from Satellite Information // Atmospheric and Oceanic Optics, 2021, V. 34. No. 05. pp. 433–437.
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8. Kalchikhin V. V., Kobzev A. A., Tikhomirov A. A., Filatov D. E. Optimization of the calibration procedure for the optoelectronic precipitation gauge. P. 535–538
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Kalchikhin V. V., Kobzev A. A., Tikhomirov A. A., Filatov D. E. Optimization of the calibration procedure for the optoelectronic precipitation gauge. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 535–538. DOI: 10.15372/AOO20210708 [in Russian].
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Kalchikhin V.V., Kobzev A.A., Tikhomirov A.A. and Filatov D.E. Optimization of Calibration Procedure for an Optoelectronic Precipitation Gage // Atmospheric and Oceanic Optics, 2021, V. 34. No. 06. pp. 726–729.
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9. Vasiliev V. P., Znamenskii I. V., Tikhomirov A. A. Simulation of batch signal processing in laser rangefindes. P. 539–546
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Vasiliev V. P., Znamenskii I. V., Tikhomirov A. A. Simulation of batch signal processing in laser rangefindes. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 539–546. DOI: 10.15372/AOO20210709 [in Russian].
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Vasiliev V.P., Znamenskii I.V. and Tikhomirov A.A. Simulation of Batch Signal Processing in Laser Rangefinders // Atmospheric and Oceanic Optics, 2021, V. 34. No. 05. pp. 447–454.
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10. Volkov M. V., Bogachev V. A., Starikov F. A., Shnyagin R. A. Numerical simulation of dynamical adaptive phase correction of turbulent radiation distortions and estimation of their temporal characteristics with the help of Shack–Hartmann wavefront sensor. P. 547–554
Bibliographic reference:
Volkov M. V., Bogachev V. A., Starikov F. A., Shnyagin R. A. Numerical simulation of dynamical adaptive phase correction of turbulent radiation distortions and estimation of their temporal characteristics with the help of Shack–Hartmann wavefront sensor. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 547–554. DOI: 10.15372/AOO20210710 [in Russian].
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Volkov M.V., Bogachev V.A., Starikov F.A., Shnyagin R.A. Numerical Study of Dynamic Adaptive Phase Correction of Radiation Turbulent Distortions and Estimation of their Frequency Bandwidth with a Shack–Hartmann Wavefront Sensor // Atmospheric and Oceanic Optics, 2022, V. 35. No. 03. pp. 250–257.
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11. Sychev V. V., Klem A. I., Korotkova K. I., Komarova O. I. Ways to solve the problem of controlling the deformation of the primary mirror on BTA-6 telescope. P. 555–563
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Sychev V. V., Klem A. I., Korotkova K. I., Komarova O. I. Ways to solve the problem of controlling the deformation of the primary mirror on BTA-6 telescope. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 555–563. DOI: 10.15372/AOO20210711 [in Russian].
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Sychev V.V., Klem A.I., Korotkova K.I., Komarova O.I. Systems for Controlling Deformations of the Primary Mirror of the BTA-6 Telescope // Atmospheric and Oceanic Optics, 2022, V. 35. No. 03. pp. 232–239.
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12. Konyaev P. A. Image processing for real-time correction of atmospheric turbulent distortions. P. 564–568
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Konyaev P. A. Image processing for real-time correction of atmospheric turbulent distortions. // Optika Atmosfery i Okeana. 2021. V. 34. No. 07. P. 564–568. DOI: 10.15372/AOO20210712 [in Russian].
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Konyaev P.A. Digital Image Processing for Real-Time Correction of Atmospheric Turbulent Distortions // Atmospheric and Oceanic Optics, 2022, V. 35. No. 03. pp. 197–201.
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