Content of issue 11, volume 26, 2013

  1. Lavrent'eva N.N., Voronin B.A. Calculation of H2O–CO2 line broadening. P. 919–924
    Bibliographic reference:
    Lavrent'eva N.N., Voronin B.A. Calculation of H2O–CO2 line broadening. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 919–924 [in Russian].
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  2. Klimeshina T.E., Petrova T.M., Rodimova O.B., Solodov A.A., Solodov A.M. The СО2 absorption near band heads in the 8000 см–1 region. P. 925–931
    Bibliographic reference:
    Klimeshina T.E., Petrova T.M., Rodimova O.B., Solodov A.A., Solodov A.M. The СО2 absorption near band heads in the 8000 см–1 region. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 925–931 [in Russian].
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  3. Banakh V.A., Sukharev A.A., Falits A.V. Diffraction of the optical beam on a shock wave in the vicinity of a supersonic aircraft. P. 932–941
    Bibliographic reference:
    Banakh V.A., Sukharev A.A., Falits A.V. Diffraction of the optical beam on a shock wave in the vicinity of a supersonic aircraft. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 932–941 [in Russian].
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  4. Botygina N.N., Kovadlo P.G., Kopylov E.A., Lukin V.P., Tuev M.V., Shikhovtsev A.Yu. Estimation of the astronomical seeing quality at the Big solar vacuum telescope site from the optical and meteorological measurements. P. 942–947
    Bibliographic reference:
    Botygina N.N., Kovadlo P.G., Kopylov E.A., Lukin V.P., Tuev M.V., Shikhovtsev A.Yu. Estimation of the astronomical seeing quality at the Big solar vacuum telescope site from the optical and meteorological measurements. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 942–947 [in Russian].
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    Bibliographic reference to english version:
    Botygina N.N., Kovadlo P.G., Kopylov E.A., Lukin V.P., Tuev M.V., and Shikhovtsev A.Yu. Estimation of the Astronomical Seeing at the Large Solar Vacuum Telescope Site from Optical and Meteorological Measurements. // Atmospheric and Oceanic Optics, 2014, V. 27. No. 02. pp. 142–146.
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  5. Gladkikh V.A., Nevzorova I.V., Odintsov S.L., Fedorov V.A. Structural functions of air temperature over inhomogeneous surface. Part I. Typical forms of structural functions. P. 948–954
    Bibliographic reference:
    Gladkikh V.A., Nevzorova I.V., Odintsov S.L., Fedorov V.A. Structural functions of air temperature over inhomogeneous surface. Part I. Typical forms of structural functions. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 948–954 [in Russian].
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    Bibliographic reference to english version:
    Gladkikh V.A., Nevzorova I.V., Odintsov S.L., and Fedorov V.A. Structure Functions of Air Temperature over an Inhomogeneous Underlying Surface. Part I. Typical Forms of Structure Functions. // Atmospheric and Oceanic Optics, 2014, V. 27. No. 02. pp. 147–153.
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  6. Gladkikh V.A., Nevzorova I.V., Odintsov S.L., Fedorov V.A. Structural functions of air temperature over inhomogeneous surface. Part II. Statistics of parameters of structural functions. P. 955–963
    Bibliographic reference:
    Gladkikh V.A., Nevzorova I.V., Odintsov S.L., Fedorov V.A. Structural functions of air temperature over inhomogeneous surface. Part II. Statistics of parameters of structural functions. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 955–963 [in Russian].
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    Bibliographic reference to english version:
    Gladkikh V.A., Nevzorova I.V., Odintsov S.L., and Fedorov V.A. Structure Functions of Air Temperature over an Inhomogeneous Underlying Surface. Part II. Statistics of Structure Functions’ Parameters. // Atmospheric and Oceanic Optics, 2014, V. 27. No. 02. pp. 154–163.
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  7. Kapegesheva O.F., Krasnenko N.P., Stafeev P.G., Shamanaeva L.G. Outer scale of dynamic turbulence retrieved from results of acoustic sounding of the atmosphere. P. 964–968
    Bibliographic reference:
    Kapegesheva O.F., Krasnenko N.P., Stafeev P.G., Shamanaeva L.G. Outer scale of dynamic turbulence retrieved from results of acoustic sounding of the atmosphere. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 964–968 [in Russian].
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  8. Iglakova A.N., Matvienko G.G., Oshlakov V.K., Prokop'ev V.E., Timofeev V.I. Molecular and trace element analysis of leaves of green plants. P. 969–973
    Bibliographic reference:
    Iglakova A.N., Matvienko G.G., Oshlakov V.K., Prokop'ev V.E., Timofeev V.I. Molecular and trace element analysis of leaves of green plants. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 969–973 [in Russian].
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  9. Apeksimov D.V., Bukin O.A., Bykova E.E., Golik S.S., Zemlyanov A.A., Kabanov A.M., Matvienko G.G., Petrov A.V. Emission of sea aerosol under action of the ultrashort Ti:Sapphire laser pulses at the first and second harmonics. P. 974–977
    Bibliographic reference:
    Apeksimov D.V., Bukin O.A., Bykova E.E., Golik S.S., Zemlyanov A.A., Kabanov A.M., Matvienko G.G., Petrov A.V. Emission of sea aerosol under action of the ultrashort Ti:Sapphire laser pulses at the first and second harmonics. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 974–977 [in Russian].
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  10. Gruzdev A.N., Isakov A.A., Shukurova L.M. Analysis of relation of condensation activity of surface aerosol to its chemical composition and relative humidity of the air according to measurements at Zvenigorod Scientific Station. P. 978–984
    Bibliographic reference:
    Gruzdev A.N., Isakov A.A., Shukurova L.M. Analysis of relation of condensation activity of surface aerosol to its chemical composition and relative humidity of the air according to measurements at Zvenigorod Scientific Station. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 978–984 [in Russian].
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    Bibliographic reference to english version:
    Gruzdev A.N., Isakov A.A., and Shukurova L.M. Analysis of Relationship between Condensation Activity of Surface Aerosol and Its Chemical Composition and Relative Air Humidity according to Measurements at the Zvenigorod Scientific Station. // Atmospheric and Oceanic Optics, 2014, V. 27. No. 02. pp. 169–175.
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  11. Zhuravleva T.B., Sakerin S.M., Bedareva T.V., Kabanov D.M., Nasrtdinov I.M., Chesnokova T.Yu. Solar radiation fluxes in the clear atmosphere of Western Siberia: a comparison of calculations with measurements. P. 985-994
    Bibliographic reference:
    Zhuravleva T.B., Sakerin S.M., Bedareva T.V., Kabanov D.M., Nasrtdinov I.M., Chesnokova T.Yu. Solar radiation fluxes in the clear atmosphere of Western Siberia: a comparison of calculations with measurements. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 985-994 [in Russian].
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    Bibliographic reference to english version:
    Zhuravleva T.B., Sakerin S.M., Bedareva T.V., Kabanov D.M., Nasrtdinov I.M., and Chesnokova T.Yu. Solar Radiative Fluxes in the Clear-Sky Atmosphere of Western Siberia:A Comparison of Simulations with Field Measurements. // Atmospheric and Oceanic Optics, 2014, V. 27. No. 02. pp. 176–186.
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  12. Ivlev G.A., Belan B.D., Dorokhov V.M. Dynamics of solar UV-B and UV-A radiations in Tomsk during ozone anomaly in spring, 2011. P. 995-1004
    Bibliographic reference:
    Ivlev G.A., Belan B.D., Dorokhov V.M. Dynamics of solar UV-B and UV-A radiations in Tomsk during ozone anomaly in spring, 2011. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 995-1004 [in Russian].
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  13. Galileiskii V.P., Grishin A.I., Morozov A.M. Numerical simulation of angular distribution of the scattered solar radiation brightness in the Earth’s atmosphere. P. 1005-1007
    Bibliographic reference:
    Galileiskii V.P., Grishin A.I., Morozov A.M. Numerical simulation of angular distribution of the scattered solar radiation brightness in the Earth’s atmosphere. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 1005-1007 [in Russian].
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  14. Ponomarev Yu.N. Conference on Photoacoustic and Photothermal Theory and Application – CPPTA. P. 1008-1009
    Bibliographic reference:
    Ponomarev Yu.N. Conference on Photoacoustic and Photothermal Theory and Application – CPPTA. // Optika Atmosfery i Okeana. 2013. V. 26. No. 11. P. 1008-1009 [in Russian].
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