Content of issue 04, volume 31, 2018

1. Sinitsa L. N., Serdyukov V. I., Polovtseva E. R., Bykov A. D., Shcherbakov A. P. Study of the water vapor absorption spectrum in the visible region from 19480 to 20500 cm-1. P. 247–252
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Sinitsa L. N., Serdyukov V. I., Polovtseva E. R., Bykov A. D., Shcherbakov A. P. Study of the water vapor absorption spectrum in the visible region from 19480 to 20500 cm-1. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 247–252. DOI: 10.15372/AOO20180401 [in Russian].
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Sinitsa L.N., Serdyukov V.I., Polovtseva E.R., Bykov A.D. and Shcherbakov A.P. Study of the Water Vapor Absorption Spectrum in the Visible Spectral Region from 19 480 to 20 500 cm−1. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 04. pp. 329–334.
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2. Starikov V. I. Vibrational dependence of the broadening coefficients of H2O absorption lines perturbed by neon, krypton, and xenon pressure. P. 253–262
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Starikov V. I. Vibrational dependence of the broadening coefficients of H2O absorption lines perturbed by neon, krypton, and xenon pressure. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 253–262. DOI: 10.15372/AOO20180402 [in Russian].
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Starikov V.I. Vibrational Dependences of Broadening and Shift Coefficients of H2O Absorption Lines Perturbed by Ne, Kr, and Xe. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 04. pp. 335–345.
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3. Ziatkova A. G., Zamotaevа V. A., Kоnоv I. A. High resolution study of the n2 band of sulfur dioxide. P. 263–267
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Ziatkova A. G., Zamotaevа V. A., Kоnоv I. A. High resolution study of the n2 band of sulfur dioxide. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 263–267. DOI: 10.15372/AOO20180403 [in Russian].
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4. Shamanaev V. S. Sea fish school detection by the method of polarization laser sensing. P. 268–274
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Shamanaev V. S. Sea fish school detection by the method of polarization laser sensing. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 268–274. DOI: 10.15372/AOO20180404 [in Russian].
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Shamanaev V.S. Detection of Schools of Marine Fish Using Polarization Laser Sensing. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 04. pp. 358–364.
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5. Polonsky A. B., Mel’nikova E. B., Serebrennikov A. N., Tokarev Yu. N. Regional peculiarities of the bioluminescent lighting and chlorophyll a concentration in the Black Sea phytoplankton. P. 275–281
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Polonsky A. B., Mel’nikova E. B., Serebrennikov A. N., Tokarev Yu. N. Regional peculiarities of the bioluminescent lighting and chlorophyll a concentration in the Black Sea phytoplankton. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 275–281. DOI: 10.15372/AOO20180405 [in Russian].
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Polonsky A.B., Mel’nikova E.B., Serebrennikov A.N. and Tokarev Yu.N. Regional Peculiarities of Hydrobiont Bioluminescence Intensity and Chlorophyll a Concentration in Black Sea Waters. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 04. pp. 365–371.
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6. Аntokhin P. N., Gochakov A. V., Kolker A. B., Penenko A. V. Comparison of the calculation results of the chemical transport model WRF-CHEM with airborne measurements in Norilsk. P. 282–287
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Аntokhin P. N., Gochakov A. V., Kolker A. B., Penenko A. V. Comparison of the calculation results of the chemical transport model WRF-CHEM with airborne measurements in Norilsk. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 282–287. DOI: 10.15372/AOO20180406 [in Russian].
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Antokhin P.N., Gochakov A.V., Kolker A.B. and Penenko A.V. Comparison of WRF-CHEM Chemical Transport Model Calculations with Aircraft Measurements in Norilsk. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 04. pp. 372–380.
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7. Sklyadneva T. K., Rasskazchikova T. M., Arshinova V. G., Arshinov M. Yu. Changes in radiation and meteorological parameters of the atmosphere from observation data in Tomsk. P. 288–293
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Sklyadneva T. K., Rasskazchikova T. M., Arshinova V. G., Arshinov M. Yu. Changes in radiation and meteorological parameters of the atmosphere from observation data in Tomsk. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 288–293. DOI: 10.15372/AOO20180407 [in Russian].
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8. Vasil’ev D. Yu., Babkov O. K., Davliev I. R., Semenov V. A., Christodulo O. I. Spatio-temporal structure of surface air temperature fluctuations in the Southern Urals. P. 294–302
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Vasil’ev D. Yu., Babkov O. K., Davliev I. R., Semenov V. A., Christodulo O. I. Spatio-temporal structure of surface air temperature fluctuations in the Southern Urals. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 294–302. DOI: 10.15372/AOO20180408 [in Russian].
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9. Sakerin S. M., Golobokova L. P., Kabanov D. M., Pol'kin V. V., Radionov V. F. Zonal distribution of aerosol physical-chemical characteristics in the Eastern Atlantic. P. 303–312
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Sakerin S. M., Golobokova L. P., Kabanov D. M., Pol'kin V. V., Radionov V. F. Zonal distribution of aerosol physical-chemical characteristics in the Eastern Atlantic. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 303–312. DOI: 10.15372/AOO20180409 [in Russian].
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Sakerin S.M., Golobokova L.P., Kabanov D.M., Pol’kin V.V. and Radionov V.F. Zonal Distribution of Aerosol Physicochemical Characteristics in the Eastern Atlantic. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 05. pp. 492–501.
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10. Mankovsky V. I. Estimation of the total concentration of suspended matter and its organic and mineral fractions in the Lake Baikal by the Secchi Disk. P. 313–317
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Mankovsky V. I. Estimation of the total concentration of suspended matter and its organic and mineral fractions in the Lake Baikal by the Secchi Disk. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 313–317. DOI: 10.15372/AOO20180410 [in Russian].
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Mankovsky V.I. Estimation of the Total Concentration of Suspended Matter and Its Organic and Mineral Fractions in Lake Baikal by the Secchi Disk. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 05. pp. 502–506.
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11. Tashchcilin A. V., Leonovich V. A. Model estimation of the OI 630 nm emission intensity during the strong geomagnetic storm on November 20, 2003. P. 318–323
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Tashchcilin A. V., Leonovich V. A. Model estimation of the OI 630 nm emission intensity during the strong geomagnetic storm on November 20, 2003. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 318–323. DOI: 10.15372/AOO20180411 [in Russian].
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12. Kraiskii A. V., Kraiskii A. A., Shevchenko M. A., Postnikov V. A., Sultanov T. T., Mironova T. V., Kazaryan M. A. Estimation of holographic layer parameters from transmission spectra in holographic sensors based on silver emulsions. P. 324–329
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Kraiskii A. V., Kraiskii A. A., Shevchenko M. A., Postnikov V. A., Sultanov T. T., Mironova T. V., Kazaryan M. A. Estimation of holographic layer parameters from transmission spectra in holographic sensors based on silver emulsions. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 324–329. DOI: 10.15372/AOO20180412 [in Russian].
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Kraiskii A.V., Kraiskii A.A., Shevchenko M.A., Postnikov V.A., Sultanov T.T., Mironova T.V. and Kazaryan M.A. Estimation of Parameters of Transmission Spectra in Silver-Emulsion-Based Holographic Sensors. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 05. pp. 539–544.
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13. Kalchikhin V. V., Kobzev A. A., Korolkov V. A., Tikhomirov A. A. Some results of optical precipitation gauge field tests. P. 330–332
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Kalchikhin V. V., Kobzev A. A., Korolkov V. A., Tikhomirov A. A. Some results of optical precipitation gauge field tests. // Optika Atmosfery i Okeana. 2018. V. 31. No. 04. P. 330–332. DOI: 10.15372/AOO20180413 [in Russian].
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Kalchikhin V.V., Kobzev A.A., Korolkov V.A. and Tikhomirov A.A. Results of Optical Precipitation Gage Field Tests. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 05. pp. 545–547.
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