Content of issue 08, volume 29, 2016

1. Podnebesnykh N. V., Ippolitov I. I., Kabanov M. V. Relation of climatic characteristics with cyclonic activity in winter over Siberia in 1976–2011. P. 617-624
Bibliographic reference:
Podnebesnykh N. V., Ippolitov I. I., Kabanov M. V. Relation of climatic characteristics with cyclonic activity in winter over Siberia in 1976–2011. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 617-624. DOI: 10.15372/AOO20160801 [in Russian].
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Podnebesnykh N.V., Ippolitov I.I. and Kabanov M.V. Connections between Climatic Characteristics and Cyclonic Activity in Winter over Siberia in 1976–2011. // Atmospheric and Oceanic Optics, 2017, V. 30. No. 01. pp. 55–62.
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2. Cheredko N. N., Tartakovsky V. A., Krutikov V. A., Volkov Yu. V. Classification of climate of the Northern hemisphere using phases of temperature signals. P. 625-632
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Cheredko N. N., Tartakovsky V. A., Krutikov V. A., Volkov Yu. V. Classification of climate of the Northern hemisphere using phases of temperature signals. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 625-632. DOI: 10.15372/AOO20160802 [in Russian].
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Cheredko N.N., Tartakovsky V.A., Krutikov V.A. and Volkov Yu.V. Climate Classification in the Northern Hemisphere Using Phases of Temperature Signals. // Atmospheric and Oceanic Optics, 2017, V. 30. No. 01. pp. 63–69.
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3. Ogurtsov L. A., Cheredko N. N., Volkova M. A., Zhuravlev G. G. Dynamics of climate extremes in Western Siberia. P. 633-639
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Ogurtsov L. A., Cheredko N. N., Volkova M. A., Zhuravlev G. G. Dynamics of climate extremes in Western Siberia. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 633-639. DOI: 10.15372/AOO20160803 [in Russian].
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4. Loginov S. V., Moraru E. I., Kharyutkina E. V. The relationship of tropospheric circulation cells with variability of meridional heat fluxes over the territory of Siberia. P. 640–646
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Loginov S. V., Moraru E. I., Kharyutkina E. V. The relationship of tropospheric circulation cells with variability of meridional heat fluxes over the territory of Siberia. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 640–646. DOI: 10.15372/AOO20160804 [in Russian].
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5. Pustovalov K. N., Nagorskiy P. M. The main types of electric field variations during the passage of cumulonimbus clouds of different genesis. P. 647–653
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Pustovalov K. N., Nagorskiy P. M. The main types of electric field variations during the passage of cumulonimbus clouds of different genesis. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 647–653. DOI: 10.15372/AOO20160805 [in Russian].
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6. Kalchikhin V. V., Kobzev A. A., Korolkov V. A., Tikhomirov A. A. Determination of precipitation type using the results of optical measurements of the precipitation microstructure characteristics. P. 654–657
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Kalchikhin V. V., Kobzev A. A., Korolkov V. A., Tikhomirov A. A. Determination of precipitation type using the results of optical measurements of the precipitation microstructure characteristics. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 654–657. DOI: 10.15372/AOO20160806 [in Russian].
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7. Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. The atmospheric turbulence profile measurement method from observations of laser guide stars. P. 658–665
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Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. The atmospheric turbulence profile measurement method from observations of laser guide stars. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 658–665. DOI: 10.15372/AOO20160807 [in Russian].
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Nosov V.V., Lukin V.P., Nosov E.V. and Torgaev A.V. Method for Atmospheric Turbulence Profile Measurement from Observation of Laser Guide Stars. // Atmospheric and Oceanic Optics, 2017, V. 30. No. 02. pp. 176–183.
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8. Sakerin S. M., Kabanov D. M., Pol'kin V. V., Radionov V. F., Holben B. N., Smirnov A. Variations in optical and microphysical characteristics of aerosol along the route of Russian Antarctic Expeditions in the East Atlantic. P. 666–678
Bibliographic reference:
Sakerin S. M., Kabanov D. M., Pol'kin V. V., Radionov V. F., Holben B. N., Smirnov A. Variations in optical and microphysical characteristics of aerosol along the route of Russian Antarctic Expeditions in the East Atlantic. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 666–678. DOI: 10.15372/AOO20160808 [in Russian].
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Sakerin S.M., Kabanov D.M., Polkin V.V., Radionov V.F., Holben B.N. and Smirnov A. Variations in Aerosol Optical and Microphysical Characteristics along the Route of Russian Antarctic Expeditions in the East Atlantic. // Atmospheric and Oceanic Optics, 2017, V. 30. No. 01. pp. 89–102.
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9. Kokhanenko G. P., Balin Yu. S., Klemasheva M. G., Penner I. E., Samoilova S. V., Terpugova S. A., Banakh V. A., Smalikho I. N., Falits A. V., Rasskazchikova T. M., Аntokhin P. N., Arshinov M. Yu., Belan B. D., Belan S. B. Structure of aerosol fields of the atmospheric boundary layer according to aerosol and Doppler lidars during the passage of atmospheric fronts. P. 679–688
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Kokhanenko G. P., Balin Yu. S., Klemasheva M. G., Penner I. E., Samoilova S. V., Terpugova S. A., Banakh V. A., Smalikho I. N., Falits A. V., Rasskazchikova T. M., Аntokhin P. N., Arshinov M. Yu., Belan B. D., Belan S. B. Structure of aerosol fields of the atmospheric boundary layer according to aerosol and Doppler lidars during the passage of atmospheric fronts. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 679–688. DOI: 10.15372/AOO20160809 [in Russian].
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Kokhanenko G.P., Balin Yu.S., Klemasheva M.G., Penner I.E., Samoilova S.V., Terpugova S.A., Banakh V.A., Smalikho I.N., Falits A.V., Rasskazchikova T.M., Antokhin P.N., Arshinov M.Yu., Belan B.D. and Belan S.B. Structure of Aerosol Fields of the Atmospheric Boundary Layer according to Aerosol and Doppler Lidar Data During Passage of Atmospheric Fronts. // Atmospheric and Oceanic Optics, 2017, V. 30. No. 01. pp. 18–32.
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10. Balin Yu. S., Klemasheva M. G., Kokhanenko G. P., Nasonov S. V., Novoselov M. M., Penner I. E. Lidar study of the vertical structure of aerosol fields in the atmosphere over Lake Baikal during forest fires. P. 689-693
Bibliographic reference:
Balin Yu. S., Klemasheva M. G., Kokhanenko G. P., Nasonov S. V., Novoselov M. M., Penner I. E. Lidar study of the vertical structure of aerosol fields in the atmosphere over Lake Baikal during forest fires. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 689-693. DOI: 10.15372/AOO20160810 [in Russian].
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11. Banakh V. A., Smalikho I. N., Sukharev A. A., Falits A. V. Lidar visualization of jet flows and internal gravity waves in the atmospheric boundary layer. P. 694–702
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Banakh V. A., Smalikho I. N., Sukharev A. A., Falits A. V. Lidar visualization of jet flows and internal gravity waves in the atmospheric boundary layer. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 694–702. DOI: 10.15372/AOO20160811 [in Russian].
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12. Nevzorov A. A., Burlakov V. D., Dolgii S. I., Nevzorov A. V., Romanovskii O. A., Kharchenko O. V., Gridnev Yu. V. Comparison of lidar and satellite measurements of vertical ozone profiles using data received in 2015. P. 703-708
Bibliographic reference:
Nevzorov A. A., Burlakov V. D., Dolgii S. I., Nevzorov A. V., Romanovskii O. A., Kharchenko O. V., Gridnev Yu. V. Comparison of lidar and satellite measurements of vertical ozone profiles using data received in 2015. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 703-708. DOI: 10.15372/AOO20160812 [in Russian].
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13. Kamardin A. P., Odintsov S. L. Vertical profiles of the structure characteristic of air temperature in the atmospheric boundary layer from sodar measurements. P. 709-714
Bibliographic reference:
Kamardin A. P., Odintsov S. L. Vertical profiles of the structure characteristic of air temperature in the atmospheric boundary layer from sodar measurements. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 709-714. DOI: 10.15372/AOO20160813 [in Russian].
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Kamardin A.P. and Odintsov S.L. Height Profiles of the Structure Characteristic of Air Temperature in the Atmospheric Boundary Layer from Sodar Measurements. // Atmospheric and Oceanic Optics, 2017, V. 30. No. 01. pp. 33–38.
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14. Lopasov V. P. The physical basis for the generation of laser radiation magnetic multipole. P. 715-721
Bibliographic reference:
Lopasov V. P. The physical basis for the generation of laser radiation magnetic multipole. // Optika Atmosfery i Okeana. 2016. V. 29. No. 08. P. 715-721. DOI: 10.15372/AOO20160814 [in Russian].
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15. Information. P. 722