Content of issue 04, volume 29, 2016

  1. Banakh V.A., Sukharev A.A. Contribution of atmospheric turbulence in distortions of laser beams caused by а shock wave arising at the supersonic flowing the turret. P. 257–262
    Bibliographic reference:
    Banakh V.A., Sukharev A.A. Contribution of atmospheric turbulence in distortions of laser beams caused by а shock wave arising at the supersonic flowing the turret. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 257–262 [in Russian].
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  2. Gurvich A.S., Kulikov V.A. Sensing of short-living aerosol clusters by airborne lidars. P. 263–267
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    Gurvich A.S., Kulikov V.A. Sensing of short-living aerosol clusters by airborne lidars. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 263–267 [in Russian].
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    Gurvich A.S. and Kulikov V.A. Airborne Lidar Sounding of Short-lived Aerosol Clusters. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 410–414.
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  3. Arsen'yan T.I., Vokhnik O.M., Zotov A.M., Komarov A.G., Nesterov A.V., Sukhareva N.A. Superstatistics of the optical beam scintillations over thermally nonequilibrium paths. P. 268–275
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    Arsen'yan T.I., Vokhnik O.M., Zotov A.M., Komarov A.G., Nesterov A.V., Sukhareva N.A. Superstatistics of the optical beam scintillations over thermally nonequilibrium paths. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 268–275 [in Russian].
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    Arsenyan T.I., Vokhnik O.M., Zotov A.M., Komarov A.G., Nesterov A.V. and Suhareva N.A. Superstatistics of Optical Beam Scintillations over Thermally Nonequilibrium Paths. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 415–431.
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  4. Arsen'yan T.I., Babanin E.A., Vokhnik O.M., Zotov A.M., Mardanov A.F., Sukhareva N.A. The mode convertion of the structurally stable vector beams propagating through free space optical channels. P. 276–284
    Bibliographic reference:
    Arsen'yan T.I., Babanin E.A., Vokhnik O.M., Zotov A.M., Mardanov A.F., Sukhareva N.A. The mode convertion of the structurally stable vector beams propagating through free space optical channels. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 276–284 [in Russian].
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    Arsenyan T.I., Babanin E.A., Vokhnik O.M., Zotov A.M., Mardanov A.F. and Suhareva N.A. The Mode Conversion of Structurally Stable Vector Beams Propagating through Free Space Optical Channels. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 483–491.
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  5. Afanas'ev A.L., Banakh V.A., Rostov A.P. Estimation of integral wind velocity and turbulence in the atmosphere from distortions of optical images of naturally illuminated objects. P. 285–293
    Bibliographic reference:
    Afanas'ev A.L., Banakh V.A., Rostov A.P. Estimation of integral wind velocity and turbulence in the atmosphere from distortions of optical images of naturally illuminated objects. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 285–293 [in Russian].
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    Afanasiev A.L., Banakh V.A. and Rostov A.P. Estimation of the Integral Wind Velocity and Turbulence in the Atmosphere from Distortions of Optical Images of Naturally Illuminated Objects. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 422–430.
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  6. Marakasov D.A. Estimation of mean wind velocity from correlations of centers of gravity shifings for non-coherent sources in the turbulent atmosphere. P. 294–299
    Bibliographic reference:
    Marakasov D.A. Estimation of mean wind velocity from correlations of centers of gravity shifings for non-coherent sources in the turbulent atmosphere. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 294–299 [in Russian].
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  7. Lukin I.P. Spatial scales of coherence of diffraction-free beams in a turbulent atmosphere. P. 300–310
    Bibliographic reference:
    Lukin I.P. Spatial scales of coherence of diffraction-free beams in a turbulent atmosphere. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 300–310 [in Russian].
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    Lukin I.P. Spatial Scales of Coherence of Diffraction-Free Beams in a Turbulent Atmosphere. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 431–440.
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  8. Banakh V.A., Gerasimova L.O. Diffraction of short pulsed Laguerre–Gaussian beams. P. 311–316
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    Banakh V.A., Gerasimova L.O. Diffraction of short pulsed Laguerre–Gaussian beams. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 311–316 [in Russian].
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    Banakh V.A. and Gerasimova L.O. Diffraction of Short-Pulse Laguerre–Gaussian Beams. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 441–446.
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  9. Marakasov D.A., Rytchkov D.S. Estimation of the effective beam width of axially symmetric laser beams propagating in the turbulent atmosphere using the Pointing vector streamlines. P. 317–322
    Bibliographic reference:
    Marakasov D.A., Rytchkov D.S. Estimation of the effective beam width of axially symmetric laser beams propagating in the turbulent atmosphere using the Pointing vector streamlines. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 317–322 [in Russian].
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    Marakasov D.A. and Rychkov D.S. Estimate of the Change in the Effective Beam Width by the Streamline Method for Axisymmetric Laser Beams in a Turbulent Atmosphere. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 447–451.
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  10. Popovicheva O.B., Kozlov V.S., Rakhimov R.F., Shmargunov V.P., Kireeva E.D., Persiantseva N.M., Timofeev M.A., Engling G., Elephteriadis K., Diapouli L., Panchenko M.V., Zimmermann R., Schnelle-Kreis J. Optical-microphysical and physical-chemical characteristics of Siberian biomass burning: small-scale fires in an aerosol chamber. P. 323–331
    Bibliographic reference:
    Popovicheva O.B., Kozlov V.S., Rakhimov R.F., Shmargunov V.P., Kireeva E.D., Persiantseva N.M., Timofeev M.A., Engling G., Elephteriadis K., Diapouli L., Panchenko M.V., Zimmermann R., Schnelle-Kreis J. Optical-microphysical and physical-chemical characteristics of Siberian biomass burning: small-scale fires in an aerosol chamber. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 323–331 [in Russian].
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    Popovicheva O.B., Kozlov V.S., Rakhimov R.F., Shmargunov V.P., Kireeva E.D., Persiantseva N.M., Timofeev M.A., Engling G., Eleftheriadis K., Diapouli E., Panchenko M.V., Zimmermann R. and Schnelle-Kreis J. Optical-Microphysical and Physical-Chemical Characteristics of Siberian Biomass Burning: Experiments in Aerosol Chamber. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 492–500.
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  11. Donchenko V.A., Zemlyanov Al.A., Zinoviev M.M., Panamarev N.S., Trifonova A.V., Kharenkov V.A. Peculiarities of lasing in solutions of Rhodamine 6G with nanoparticles free of plasmon resonance. P. 332–337
    Bibliographic reference:
    Donchenko V.A., Zemlyanov Al.A., Zinoviev M.M., Panamarev N.S., Trifonova A.V., Kharenkov V.A. Peculiarities of lasing in solutions of Rhodamine 6G with nanoparticles free of plasmon resonance. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 332–337 [in Russian].
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    Donchenko V.A., Zemlyanov Al.A., Zinoviev M.M., Panamarev N.S., Trifonova A.V. and Kharenkov V.A. Properties of Lasing in Rhodamine 6G Solutions with Nanoparticles Free of Plasmon Resonance. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 452–456.
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  12. Ionin A.A., Kalnitskii L.Yu., Kinyaevskii I.O., Klimachev Yu.M., Kozlov A.Yu., Kotkov A.A., Matvienko G.G., RomanovskiI O.A., Yakovlev S.V. Measuring the absorption in nitrous oxide and methane at first-overtone CO laser wavelengths using topographic target and receiving telescope. P. 338–342
    Bibliographic reference:
    Ionin A.A., Kalnitskii L.Yu., Kinyaevskii I.O., Klimachev Yu.M., Kozlov A.Yu., Kotkov A.A., Matvienko G.G., RomanovskiI O.A., Yakovlev S.V. Measuring the absorption in nitrous oxide and methane at first-overtone CO laser wavelengths using topographic target and receiving telescope. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 338–342 [in Russian].
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  13. Lubkov A.S., Voskresenskaya E.N., Kukushkin A.S. Method for reconstruction of monthly average data on water transparency for the North-West Black Sea. P. 343–350
    Bibliographic reference:
    Lubkov A.S., Voskresenskaya E.N., Kukushkin A.S. Method for reconstruction of monthly average data on water transparency for the North-West Black Sea. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 343–350 [in Russian].
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    Lubkov A.S., Voskresenskaya E.N. and Kukushkin A.S. Method for Reconstructing the Monthly Mean Water Transparencies for the Northwestern Part of the Black Sea as an Example. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 457–464.
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  14. Kaloshin G.A., Shishkin S.A., Anisimov V.I., Zhukov V.V. Dosimetry of visual laser landing systems. P. 351–356
    Bibliographic reference:
    Kaloshin G.A., Shishkin S.A., Anisimov V.I., Zhukov V.V. Dosimetry of visual laser landing systems. // Optika Atmosfery i Okeana. 2016. V. 29. No. 04. P. 351–356 [in Russian].
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    Kaloshin G.A., Shishkin S.A., Anisimov V.I. and Zhukov V.V. Dosimetry of the Laser Visual Landing System. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 05. pp. 465–470.
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