Content of issue 02, volume 22, 2009

  1. Krupnov A.F., Tretyakov M.Yu. To the possibility of observation of millimeter-wave spectrum lines of water dimer in equilibrium gas phase. P.
    Bibliographic reference:
    Krupnov A.F., Tretyakov M.Yu. To the possibility of observation of millimeter-wave spectrum lines of water dimer in equilibrium gas phase. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. [in Russian].
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    Krupnov A.F. and Tretyakov M.Yu. A Possibility of Observations of Water Dimer Millimeter Spectrum Lines In An Equilibrium Gas Phase.  // Atmospheric and Oceanic Optics, 2009, V. 22. No. 01. pp. 1–5.
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  2. Petrova T.M. Intracavity spectroscopy of water vapor in 1.06 μm region. P.
    Bibliographic reference:
    Petrova T.M. Intracavity spectroscopy of water vapor in 1.06 μm region. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. [in Russian].
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    Petrova T.M.   Intracavity Spectroscopy of Water Vapor in the 1.06-Micrometer Range. // Atmospheric and Oceanic Optics. 2009. V. 22. No. 1. pp. 6–13
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  3. Geints Yu.E., Zemlyanov A.A., Kabanov A.M., Matvienko G.G., Stepanov A.N. Self-action of sharply focused femtosecond laser radiation in air in filamentation regime. Laboratory and numerical experiments. P. 119-125
    Bibliographic reference:
    Geints Yu.E., Zemlyanov A.A., Kabanov A.M., Matvienko G.G., Stepanov A.N. Self-action of sharply focused femtosecond laser radiation in air in filamentation regime. Laboratory and numerical experiments. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. 119-125 [in Russian].
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    Geints Yu.E., Zemlyanov A.A., Kabanov A.M., Matvienko G.G., and Stepanov A.N.. Self-Action of Tightly Focused Femtosecond Laser Radiation in Air in a Filamentation Regime: Laboratory and Numerical Experiments. // Atmospheric and Oceanic Optics, 2009, V. 22. No. 02. pp. 150–157.
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  4. Borisov B.D. Influence of the layer of a dispersed medium on the character of image of a low-intensity low-contrast object. P.
    Bibliographic reference:
    Borisov B.D. Influence of the layer of a dispersed medium on the character of image of a low-intensity low-contrast object. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. [in Russian].
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    Borisov B.D. Impact of Disperse Medium on The Image Character of a Weakly Intense Object With Low Contrast. //  Atmospheric and Oceanic Optics. 2009. V. 22. No. 1. pp. 20–25.
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  5. Silaeva E.P., Kandidov V.P. Transfer of high power femtosecond pulse filament inside aerosol layer. P.
    Bibliographic reference:
    Silaeva E.P., Kandidov V.P. Transfer of high power femtosecond pulse filament inside aerosol layer. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. [in Russian].
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    Silaeva E.P. and Kandidov V.P. Propagation of a Filament Created by a Strong Femtosecond Pulse through a Layer of Aerosol. //  Atmospheric and Oceanic Optics. 2009. V. 22. No. 1. pp. 26–34.
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  6. Jouravlev M.V. Characteristics of light scattering and coefficient of effective radiation pressure for spherical microdischarge of laser plasma. P.
    Bibliographic reference:
    Jouravlev M.V. Characteristics of light scattering and coefficient of effective radiation pressure for spherical microdischarge of laser plasma. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. [in Russian].
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    Zhuravlev M.V. Light Scattering Characteristics and the Factor of Radiation Pressure Effectiveness
    for a Spherical Microcenter of Optical Breakdown Laser Plasma. // Atmospheric and Oceanic Optics. 2009. V. 22. No. 1. pp. 35–42.
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  7. Troitskii V.O. The effect of the laser radiation amplitude profile on the second harmonics generation efficiency. P. 149-154
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    Troitskii V.O. The effect of the laser radiation amplitude profile on the second harmonics generation efficiency. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. 149-154 [in Russian].
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    Troitskii V.O. The Influence of the Amplitude Profile of Laser Radiation on Second-Harmonic Generation Efficiency. //  Atmospheric and Oceanic Optics. 2009. V. 22. No. 1, pp. 43–48.
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  8. Vasil'ev A.V., Mel'nikova I.N. About the multiplicity of solutions of the inverse problem of determining optical parameters of the scattered atmosphere from remote observation. P. 155-162
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    Vasil'ev A.V., Mel'nikova I.N. About the multiplicity of solutions of the inverse problem of determining optical parameters of the scattered atmosphere from remote observation. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. 155-162 [in Russian].
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    Vasilyev A.V. and Melnikova I.N. Multiple Solutions of the Inverse Problem of Retrieval of Scattering-Atmosphere Optical Parameters from Remote Measurements. // Atmospheric and Oceanic Optics. 2009. V. 22. No. 1. pp. 49–56.
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  9. Zhuravleva T.B., Kabanov D.M., Sakerin S.M., Firsov K.M. Simulation of direct aerosol radiative forcing for typical summer conditions of Siberia. Part 1: Method of calculation and choice of the input parameter. P. 163-172
    Bibliographic reference:
    Zhuravleva T.B., Kabanov D.M., Sakerin S.M., Firsov K.M. Simulation of direct aerosol radiative forcing for typical summer conditions of Siberia. Part 1: Method of calculation and choice of the input parameter. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. 163-172 [in Russian].
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    Zhuravleva T.B., Kabanov D.M., Sakerin S.M., and  Firsov K.M. Simulation of Aerosol Direct Radiative Forcing under Typical Summer Conditions of Siberia. Part 1. Method of Calculation and Choice of Input Parameters. // Atmospheric and Oceanic Optics. 2009. V. 22. No. 1. pp. 63–73.
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  10. Zhuravleva T.B., Sakerin S.M. Aerosol radiative forcing for typical summer conditions of Siberia. Part 2: Variability range and sensitivity to the input parameters. P.
    Bibliographic reference:
    Zhuravleva T.B., Sakerin S.M. Aerosol radiative forcing for typical summer conditions of Siberia. Part 2: Variability range and sensitivity to the input parameters. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. [in Russian].
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    Zhuravleva T.B. and  Sakerin S.M. Simulation of Aerosol Direct Radiative Forcing under Typical Summer Conditions of Siberia. Part 2. Variability Range and Sensitivity to the Input Parameters // Atmospheric and Oceanic Optics. 2009. V. 22. No. 1. pp. 74–83.
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  11. Arshinov M.Yu., Belan B.D., Davydov D.K., Inoue Gen., Maksyutov Sh.Sh., Machida Toshinobu., Fofonov A.V. Spatio-temporal variability of CO2 and CH4 concentration in the surface atmospheric layer over West Siberia. P. 183-192
    Bibliographic reference:
    Arshinov M.Yu., Belan B.D., Davydov D.K., Inoue Gen., Maksyutov Sh.Sh., Machida Toshinobu., Fofonov A.V. Spatio-temporal variability of CO2 and CH4 concentration in the surface atmospheric layer over West Siberia. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. 183-192 [in Russian].
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    Arshinov M.Yu., Belan B.D., Davydov D.K., Inouye G., Maksyutov Sh., Machida T., and Fofonov A.V. Vertical Distribution of Greenhouse Gases above Western Siberia by the Long-Term Measurement Data. // Atmospheric and Oceanic Optics, 2009, V. 22. No. 03. pp. 316–324.
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  12. Mordvinov V.I., Ivanova A.S., Devyatova E.V. Excitation of the Arctic oscillation by the torsional variations. P. 193-200
    Bibliographic reference:
    Mordvinov V.I., Ivanova A.S., Devyatova E.V. Excitation of the Arctic oscillation by the torsional variations. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. 193-200 [in Russian].
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    Mordvinov V.I., Ivanova A.S., and Devyatova E.V. Arctic Oscillation Excitation by Torsional Oscillations. //  Atmospheric and Oceanic Optics, 2009. V. 22. No. 1. pp. 94–101.
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  13. Bass L.P., Germogenova T.A., Nikolaeva O.V., Kokhanovskii A.A., Kuznetsov V.S. Numerical simulation of boundary effects in optics of aerosols and clouds. P. 201-206
    Bibliographic reference:
    Bass L.P., Germogenova T.A., Nikolaeva O.V., Kokhanovskii A.A., Kuznetsov V.S. Numerical simulation of boundary effects in optics of aerosols and clouds. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. 201-206 [in Russian].
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    Bass L.P., Germogenova T.A., Nikolaeva O.V., Kokhanovsky A. A., and Kuznetsov V.S. Numerical Simulation of Boundary Effects in Aerosol and Cloud Optics. //  Atmospheric and Oceanic Optics  2009  V. 22. No. 1. pp. 102–107.
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  14. Ageev B.G., Ponomarev Yu.N., Sapozhnikova V.A. The СО2 concentration trend in tree-rings and the atmospheric СО2. P.
    Bibliographic reference:
    Ageev B.G., Ponomarev Yu.N., Sapozhnikova V.A. The СО2 concentration trend in tree-rings and the atmospheric СО2. // Optika Atmosfery i Okeana. 2009. V. 22. No. 02. P. [in Russian].
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    Ageev B.G., Ponomarev Yu.N., and Sapozhnikova V.A. A Trend of the CO2. Concentration in Tree Rings and the Atmospheric CO2 .  Atmospheric and Oceanic Optics. 2009. V. 22. No. 1. pp. 128–134.
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