Content of issue 08, volume 32, 2019

1. Zemlyanov A. A., Geints Yu. E., Minina O. V. Evaluation of the characteristics of the domain of multiple filamentation of femtosecond laser pulses in air based on the single filamentation model. P. 601–608
Bibliographic reference:
Zemlyanov A. A., Geints Yu. E., Minina O. V. Evaluation of the characteristics of the domain of multiple filamentation of femtosecond laser pulses in air based on the single filamentation model. // Optika Atmosfery i Okeana. 2019. V. 32. No. 08. P. 601–608. DOI: 10.15372/AOO20190801 [in Russian].
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Zemlyanov A.A., Geints Yu.E. and Minina O.V. Estimation of the Characteristics of the Domain of Multiple Filamentation of Femtosecond Laser Pulses in Air Based on the Single Filamentation Model // Atmospheric and Oceanic Optics, 2020, V. 33. No. 02. pp. 117–123.
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2. Smalikho I. N., Banakh V. A., Falits A. V., Sukharev A. A. An experiment on the study of aircraft wake vortices at the airfield of Tolmachevo Airport in 2018. P. 609–619
Bibliographic reference:
Smalikho I. N., Banakh V. A., Falits A. V., Sukharev A. A. An experiment on the study of aircraft wake vortices at the airfield of Tolmachevo Airport in 2018. // Optika Atmosfery i Okeana. 2019. V. 32. No. 08. P. 609–619. DOI: 10.15372/AOO20190802 [in Russian].
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Smalikho I.N., Banakh V.A., Falits A.V. and Sukharev A.A. Experimental Study of Aircraft Wake Vortices on the Airfield of Tolmachevo Airport in 2018 // Atmospheric and Oceanic Optics, 2020, V. 33. No. 02. pp. 124–133.
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3. Kanev F. Yu., Aksenov V. P., Starikov F. A., Dolgopolov Yu. V., Kopalkin A. V., Veretekhin I. D. Detection of an optical vortex topological charge and coordinates by analyzing branches of an interference pattern. P. 620–627
Bibliographic reference:
Kanev F. Yu., Aksenov V. P., Starikov F. A., Dolgopolov Yu. V., Kopalkin A. V., Veretekhin I. D. Detection of an optical vortex topological charge and coordinates by analyzing branches of an interference pattern. // Optika Atmosfery i Okeana. 2019. V. 32. No. 08. P. 620–627. DOI: 10.15372/AOO20190803 [in Russian].
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4. Klimeshina T. E., Rodimova O. B. Calculation of H2O continuum absorption in IR-region based on Burch’s measurements. P. 628–632
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Klimeshina T. E., Rodimova O. B. Calculation of H2O continuum absorption in IR-region based on Burch’s measurements. // Optika Atmosfery i Okeana. 2019. V. 32. No. 08. P. 628–632. DOI: 10.15372/AOO20190804 [in Russian].
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5. Polonsky A. B., Mel’nikova E. B., Serebrennikov A. N. Peculiarities of the variability of the intensity of the luminous plankton community in the coastal area of the Black Sea in the spring and autumn periods. P. 633–640
Bibliographic reference:
Polonsky A. B., Mel’nikova E. B., Serebrennikov A. N. Peculiarities of the variability of the intensity of the luminous plankton community in the coastal area of the Black Sea in the spring and autumn periods. // Optika Atmosfery i Okeana. 2019. V. 32. No. 08. P. 633–640. DOI: 10.15372/AOO20190805 [in Russian].
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Polonsky A.B., Mel’nikova E.B. and Serebrennikov A.N. Features of the Variability of the Bioluminescence Intensity of the Plankton Community in the Nearshore Zone of the Black Sea in the Spring and Autumn Periods // Atmospheric and Oceanic Optics, 2020, V. 33. No. 02. pp. 146–153.
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6. Tarasenkov M. V., Zimovaya A. V., Belov V. V., Engel' M. V. Reconstruction of the Earth surface reflection coefficients from MODIS satellite measurements with allowance for radiation polarization. P. 641–649
Bibliographic reference:
Tarasenkov M. V., Zimovaya A. V., Belov V. V., Engel' M. V. Reconstruction of the Earth surface reflection coefficients from MODIS satellite measurements with allowance for radiation polarization. // Optika Atmosfery i Okeana. 2019. V. 32. No. 08. P. 641–649. DOI: 10.15372/AOO20190806 [in Russian].
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Tarasenkov M.V., Zimovaya A.V., Belov V.V. and Engel M.V. Retrieval of Reflection Coefficients of the Earth’s Surface from MODIS Satellite Measurements Considering Radiation Polarization // Atmospheric and Oceanic Optics, 2020, V. 33. No. 02. pp. 179–187.
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7. Filei A. A. Retrieval of the cloud optical depth and particle effective radii from MSU-MR daytime measurements. P. 650–656
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Filei A. A. Retrieval of the cloud optical depth and particle effective radii from MSU-MR daytime measurements. // Optika Atmosfery i Okeana. 2019. V. 32. No. 08. P. 650–656. DOI: 10.15372/AOO20190807 [in Russian].
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8. Arshinova V. G., Belan B. D., Lapchenko V. A., Lаpchenkо E. V., Rasskazchikova T. M., Savkin D. E., Sklyadneva T. K., Tolmachev G. N., Fofonov A. V. Variations in the ozone concentration in precipitation. P. 657–664
Bibliographic reference:
Arshinova V. G., Belan B. D., Lapchenko V. A., Lаpchenkо E. V., Rasskazchikova T. M., Savkin D. E., Sklyadneva T. K., Tolmachev G. N., Fofonov A. V. Variations in the ozone concentration in precipitation. // Optika Atmosfery i Okeana. 2019. V. 32. No. 08. P. 657–664. DOI: 10.15372/AOO20190808 [in Russian].
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Arshinova V.G., Belan B.D., Lapchenko V.A., Lapchenko E.V., Rasskazchikova T.M., Savkin D.E., Sklyadneva T.K., Tolmachev G.N. and Fofonov A.V. Changes in Surface Ozone Concentration during Precipitation // Atmospheric and Oceanic Optics, 2019, V. 32. No. 06. pp. 671–679.
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9. Zuev V. V., Saveljeva E. S. The influence of the stratospheric and tropospheric polar vortices on the Barents Sea ice extent during winter 1997/1998 and 2015/2016. P. 665–668
Bibliographic reference:
Zuev V. V., Saveljeva E. S. The influence of the stratospheric and tropospheric polar vortices on the Barents Sea ice extent during winter 1997/1998 and 2015/2016. // Optika Atmosfery i Okeana. 2019. V. 32. No. 08. P. 665–668. DOI: 10.15372/AOO20190809 [in Russian].
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10. Kolker D. B., Аntipov O. L., Larin S. V., Isaenko L. I., Vedenyapin V. N., Ahmatkhanov A. R., Shur V. Ya. Optical parametric oscillator at MID-IR spectral region based on periodically polled LiNbO3 pumped by Tm3+:Lu2O3 ceramic laser. P. 669–674
Bibliographic reference:
Kolker D. B., Аntipov O. L., Larin S. V., Isaenko L. I., Vedenyapin V. N., Ahmatkhanov A. R., Shur V. Ya. Optical parametric oscillator at MID-IR spectral region based on periodically polled LiNbO3 pumped by Tm3+:Lu2O3 ceramic laser. // Optika Atmosfery i Okeana. 2019. V. 32. No. 08. P. 669–674. DOI: 10.15372/AOO20190810 [in Russian].
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Kolker D.B., Antipov O.L., Larin S.V., Isaenko L.I., Vedenyapin V.N., Ahmatkhanov A.R. and Shur V.Ya. Mid-IR Optical Parametric Oscillator Based on Periodically Polled LiNbO3 Pumped by Tm3+:Lu2O3 Ceramic Laser // Atmospheric and Oceanic Optics, 2019, V. 32. No. 06. pp. 724–729.
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