Content of issue 02, volume 28, 2015

1. Manuylovich E. S., Astapenko V. A., Golovinski P. A. Propagation of ultrashort laser pulses in humid and dry air. P. 105-112
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Manuylovich E. S., Astapenko V. A., Golovinski P. A. Propagation of ultrashort laser pulses in humid and dry air. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 105-112 [in Russian].
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Manuilovich E.S., Astapenko V.A., and Golovinskii P.A. Propagation of Ultrashort Laser Pulses in Dry and Humid Air. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 03. pp. 209–215.
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2. Banakh V. A., Razenkov I. A. Aerosol lidar for study of the backscatter amplification in the atmosphere. Part II. Construction and experiment. P. 113-119
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Banakh V. A., Razenkov I. A. Aerosol lidar for study of the backscatter amplification in the atmosphere. Part II. Construction and experiment. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 113-119 [in Russian].
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3. Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. Simulation of coherent structures (topological solitons) inside closed rooms by solving numerically hydrodynamic equations. P. 120-133
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Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. Simulation of coherent structures (topological solitons) inside closed rooms by solving numerically hydrodynamic equations. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 120-133 [in Russian].
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4. Vilisova E. A., Chernyak V. G. Accommodation dependence of thermophoresis in gases under Knudsen mode. P. 134-137
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Vilisova E. A., Chernyak V. G. Accommodation dependence of thermophoresis in gases under Knudsen mode. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 134-137 [in Russian].
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Vilisova E.A. and Chernyak V.G. Accommodative Dependence of Thermophoresis in Gases in the Knudsen Regime. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 03. pp. 236–239.
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5. Zhilkin S. V., Kharlamov G. V. Investigation of the diffusion of Lennard-Jones particles in phase transition conditions by the molecular dynamics method. P. 138-142
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Zhilkin S. V., Kharlamov G. V. Investigation of the diffusion of Lennard-Jones particles in phase transition conditions by the molecular dynamics method. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 138-142 [in Russian].
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6. Abdullaev S. F., Maslov V. A., Nazarov B. I., Madvaliev U., Davlatshoev T. Content of elements in soil and dust aerosols in Tajikistan. P. 143-152
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Abdullaev S. F., Maslov V. A., Nazarov B. I., Madvaliev U., Davlatshoev T. Content of elements in soil and dust aerosols in Tajikistan. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 143-152 [in Russian].
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Abdullaev S.F., Maslov V.A., Nazarov B.I., Madvaliev U., and Davlatshoev T. The Elemental Composition of Soils and Dust Aerosol in the South-Central Part of Tajikistan. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 04. pp. 347–358.
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7. Polyakov A. V., Timofeev Yu. M., Poberovsky A. V., Virolainen Ya. A. The consideration for high near-surface concentrations of hydrochloric acid vapor in the atmosphere through ground-based spectroscopic measurements. P. 153-158
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Polyakov A. V., Timofeev Yu. M., Poberovsky A. V., Virolainen Ya. A. The consideration for high near-surface concentrations of hydrochloric acid vapor in the atmosphere through ground-based spectroscopic measurements. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 153-158 [in Russian].
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Polyakov A.V., Timofeyev Yu.M., Poberovskii A.V., and Virolainen Ya.A. Consideration of High Surface Concentrations of Hydrochloric Acid Vapors in Ground-Based Spectroscopic Measurements. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 03. pp. 240–244.
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8. Desyatkov B. M., Lapteva N. A., Shabanov A. N. A mathematical method of search for unknown point sources of gases and aerosols in the atmosphere. P. 159-162
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Desyatkov B. M., Lapteva N. A., Shabanov A. N. A mathematical method of search for unknown point sources of gases and aerosols in the atmosphere. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 159-162 [in Russian].
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Desyatkov B.M., Lapteva N.A., and Shabanov A.N. Mathematical Method for Searching Unknown Point Sources of Gas and Aerosol in the Atmosphere. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 06. pp. 518–521.
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9. Lukin V. P., Botygina N. N., Gladkikh V. A., Emaleev O. N., Konyaev P. A., Odintsov S. L., Torgaev A. V. Comparative measurements of atmospheric turbulence level with optical and acoustic meters. P. 163-166
Bibliographic reference:
Lukin V. P., Botygina N. N., Gladkikh V. A., Emaleev O. N., Konyaev P. A., Odintsov S. L., Torgaev A. V. Comparative measurements of atmospheric turbulence level with optical and acoustic meters. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 163-166 [in Russian].
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Lukin V.P., Botygina N.N., Gladkikh V.A., Emaleev O.N., Konyaev P.A., Odintsov  S.L., and Torgaev A.V. Joint Measurements of Atmospheric Turbulence Level with Optical and Acoustic Meters. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 03. pp. 254–257.
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10. Zapevalov A. S., Lebedev N. E., Pokazeev K. V. Influence of sea surface topography on the error of wind speed measurement with satellite optical scanners. P. 167-171
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Zapevalov A. S., Lebedev N. E., Pokazeev K. V. Influence of sea surface topography on the error of wind speed measurement with satellite optical scanners. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 167-171 [in Russian].
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Zapevalov A.S., Lebedev N.E., and Pokazeev K.V. The Influence of the Topographic Structure of the Sea Surface on the Error of Determining the Surface Wind by Satellite Optical Scanners. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 04. pp. 297–302.
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11. Dembelov M. G., Bashkuev Yu. B., Loukhnev A. V., Loukhneva O. F., San’kov V. A. Diagnostics of the content of atmospheric water vapor according to data of GPS measurements. P. 172-177
Bibliographic reference:
Dembelov M. G., Bashkuev Yu. B., Loukhnev A. V., Loukhneva O. F., San’kov V. A. Diagnostics of the content of atmospheric water vapor according to data of GPS measurements. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 172-177 [in Russian].
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Dembelov M.G., Bashkuev Yu.B., Lukhnev A.V., Lukhneva O.F., and San’kov V.A. Diagnostics of Atmospheric Water Vapor Content according to GPS Measurements. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 04. pp. 291–296.
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12. Lapchenko V. A., Zvyagintsev A. M. Minor atmospheric gases in the Karadag nature reserve, the Crimea. P. 178-181
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Lapchenko V. A., Zvyagintsev A. M. Minor atmospheric gases in the Karadag nature reserve, the Crimea. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 178-181 [in Russian].
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Lapchenko V.A. and Zvyagintsev A.M. Trace Atmospheric Gases in the Karadag Nature Reserve in Crimea. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 04. pp. 308–311.
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13. Tartakovsky V. A. Synchronous analysis of the Wolf numbers and temperature series from weather station in the Northern Hemisphere of the Earth. P. 182-188
Bibliographic reference:
Tartakovsky V. A. Synchronous analysis of the Wolf numbers and temperature series from weather station in the Northern Hemisphere of the Earth. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 182-188 [in Russian].
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14. Rukosuev A. L., Kudryashov A. V., Lylova A. N., Samarkin V. V., Sheldakova Yu. V. Adaptive optical system for real-time wavefront correction. P. 189-195
Bibliographic reference:
Rukosuev A. L., Kudryashov A. V., Lylova A. N., Samarkin V. V., Sheldakova Yu. V. Adaptive optical system for real-time wavefront correction. // Optika Atmosfery i Okeana. 2015. V. 28. No. 02. P. 189-195 [in Russian].
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Rukosuev A.L., Kudryashov A.V., Lylova A.N., Samarkin V.V., and Sheldakova Yu.V. Adaptive Optics System for Real-Time Wavefront Correction. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 04. pp. 381–386.
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15. Information. P. 196