Content of issue 05, volume 32, 2019

1. Geints Yu. E., Zemlyanov A. A., Minina O. V. Simulation of femtosecond laser pulses self-focusing with normal dispersion in air by the method of diffraction-beam tubes. P. 337–345
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Geints Yu. E., Zemlyanov A. A., Minina O. V. Simulation of femtosecond laser pulses self-focusing with normal dispersion in air by the method of diffraction-beam tubes. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 337–345. DOI: 10.15372/AOO20190501 [in Russian].
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Geints Yu.E., Zemlyanov A.A. and Minina O.V. Simulation of Self-focusing of Femtosecond Laser Pulses with Normal Dispersion in Air Using the Diffraction-Beam Tube Approach // Atmospheric and Oceanic Optics, 2019, V. 32. No. 05. pp. 491–498.
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2. Sulakshina O. N., Borkov Yu. G. Critical evaluation of measured transition frequencies of the 16OH molecule in the X2П state using the Ritz principle. P. 346–357
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Sulakshina O. N., Borkov Yu. G. Critical evaluation of measured transition frequencies of the 16OH molecule in the X2П state using the Ritz principle. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 346–357. DOI: 10.15372/AOO20190502 [in Russian].
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3. Dеichuli V. M., Petrova T. M., Ponomarev Yu. N., Solodov A. M., Solodov A. A. Broadening and shift coefficients of water vapor absorption lines in 8650–9020 cm–1 spectral region. P. 358–364
Bibliographic reference:
Dеichuli V. M., Petrova T. M., Ponomarev Yu. N., Solodov A. M., Solodov A. A. Broadening and shift coefficients of water vapor absorption lines in 8650–9020 cm–1 spectral region. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 358–364. DOI: 10.15372/AOO20190503 [in Russian].
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Deichuli V.M., Petrova T.M., Ponomarev Yu.N., Solodov A.M. and Solodov A.A. Broadening and Shift Coefficients of H2O Absorption Lines in the 8650–9020 cm–1 Spectral Region // Atmospheric and Oceanic Optics, 2019, V. 32. No. 05. pp. 499–505.
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4. Afanas'ev A. L., Banakh V. A., Marakasov D. A. Monitoring of wind conditions and indication of wake tracks in the area of the airport runway by the passive optical method. P. 365–370
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Afanas'ev A. L., Banakh V. A., Marakasov D. A. Monitoring of wind conditions and indication of wake tracks in the area of the airport runway by the passive optical method. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 365–370. DOI: 10.15372/AOO20190504 [in Russian].
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Afanasiev A.L., Banakh V.A. and Marakasov D.A. Passive Optical Monitoring of Wind Conditions and Indication of Aircraft Wakes Near Airport Runways // Atmospheric and Oceanic Optics, 2019, V. 32. No. 05. pp. 506–510.
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5. Banakh V. A., Falits A. V., Zaloznaya I. V. Amplification of the mean power of the echo signal of a spatially limited laser beam in a turbulent atmosphere. P. 371–375
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Banakh V. A., Falits A. V., Zaloznaya I. V. Amplification of the mean power of the echo signal of a spatially limited laser beam in a turbulent atmosphere. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 371–375. DOI: 10.15372/AOO20190505 [in Russian].
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6. Filei A. A. Determination of cloud phase using MSU-MR measurements on-board Meteor-M N 2. P. 376–380
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Filei A. A. Determination of cloud phase using MSU-MR measurements on-board Meteor-M N 2. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 376–380. DOI: 10.15372/AOO20190506 [in Russian].
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7. Timofeev D. N., Konoshonkin A. V., Kustova N. V., Shishko V. A., Borovoy A. G. Influence of absorption on light scattering on atmospheric ice crystals for wavelengths typical to lidar sounding. P. 381–385
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Timofeev D. N., Konoshonkin A. V., Kustova N. V., Shishko V. A., Borovoy A. G. Influence of absorption on light scattering on atmospheric ice crystals for wavelengths typical to lidar sounding. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 381–385. DOI: 10.15372/AOO20190507 [in Russian].
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Timofeev D.N., Konoshonkin A.V., Kustova N.V., Shishko V.A. and Borovoi A.G. Estimation of the Absorption Effect on Light Scattering by Atmospheric Ice Crystals for Wavelengths Typical for Problems of Laser Sounding of the Atmosphere // Atmospheric and Oceanic Optics, 2019, V. 32. No. 05. pp. 564–568.
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8. Biryukov E. Yu., Kostsov V. S. Application of linear regression methods based on model and experimental data to the retrieval of cloud liquid water path from ground-based microwave measurements. P. 386–394
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Biryukov E. Yu., Kostsov V. S. Application of linear regression methods based on model and experimental data to the retrieval of cloud liquid water path from ground-based microwave measurements. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 386–394. DOI: 10.15372/AOO20190508 [in Russian].
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Biryukov E.Yu. and Kostsov V.S. The Use of Linear Regression Relations Derived from Model and Experimental Data for Retrieval of the Water Content of Clouds from Ground-Based Microwave Measurements // Atmospheric and Oceanic Optics, 2019, V. 32. No. 05. pp. 569–577.
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9. Belan B. D., Savkin D. E. The role of air humidity in variations in the surface ozone concentration. P. 395–398
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Belan B. D., Savkin D. E. The role of air humidity in variations in the surface ozone concentration. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 395–398. DOI: 10.15372/AOO20190509 [in Russian].
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Belan B.D. and Savkin D.E. The Role of Air Humidity in Variations in Near-Surface Ozone Concentration // Atmospheric and Oceanic Optics, 2019, V. 32. No. 05. pp. 586–589.
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10. Akhmedzhanov A. Kh., Akhmetov N. D., Karadanov T. K. Variability of atmospheric SO2 over Kazakhstan according to ground-based and satellite measurements. P. 399–403
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Akhmedzhanov A. Kh., Akhmetov N. D., Karadanov T. K. Variability of atmospheric SO2 over Kazakhstan according to ground-based and satellite measurements. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 399–403. DOI: 10.15372/AOO20190510 [in Russian].
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11. Lukin V. P., Botygina N. N., Antoshkin L. V., Borzilov A. G., Emaleev O. N., Konyaev P. A., Kovadlo P. G., Kolobov D. Yu., Selin A. A., Soin E. L., Shikhovtsev A. Yu., Chuprakov S. A. Multi-cascading image correction system for a Large Solar Vacuum Telescope. P. 404–413
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Lukin V. P., Botygina N. N., Antoshkin L. V., Borzilov A. G., Emaleev O. N., Konyaev P. A., Kovadlo P. G., Kolobov D. Yu., Selin A. A., Soin E. L., Shikhovtsev A. Yu., Chuprakov S. A. Multi-cascading image correction system for a Large Solar Vacuum Telescope. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 404–413. DOI: 10.15372/AOO20190511 [in Russian].
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Lukin V.P., Botygina N.N., Antoshkin L.V., Borzilov A.G., Emaleev O.N., Konyaev P.A., Kovadlo P.G., Kolobov D.Yu., Selin A.A., Soin E.L., Shikhovtsev A.Yu. and Chuprakov S.A. Multi-Cascade Image Correction System for the Large Solar Vacuum Telescope // Atmospheric and Oceanic Optics, 2019, V. 32. No. 05. pp. 597–606.
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12. Kuznetsov V. S., Tarasenko V. F., Panarin V. A., Skakun V. S., Sosnin E. A., Baksht E. H. The initial stage of the diffuse jet formation in a pulsed discharge with a non-uniform electric field in air. P. 414–418
Bibliographic reference:
Kuznetsov V. S., Tarasenko V. F., Panarin V. A., Skakun V. S., Sosnin E. A., Baksht E. H. The initial stage of the diffuse jet formation in a pulsed discharge with a non-uniform electric field in air. // Optika Atmosfery i Okeana. 2019. V. 32. No. 05. P. 414–418. DOI: 10.15372/AOO20190512 [in Russian].
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Kuznetsov V.S., Tarasenko V.F., Panarin V.A., Skakun V.S., Sosnin E.A. and Baksht E.Kh. The Initial Stage of Diffuse Jet Formation in a Pulsed Discharge with a Non-Uniform Electric Field in Air // Atmospheric and Oceanic Optics, 2019, V. 32. No. 05. pp. 607–611.
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