Search Results - "Solodov, A. M."

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  1. 1

    Measurements of air-broadening parameters of water vapour transitions in the 5090-7490 cm−1 spectral region by Deichuli, V. M., Petrova, T. M., Solodov, A. M., Solodov, A. A., Starikov, V. I.

    Published in Molecular physics (03-08-2023)
    “…High-resolution spectra of H 2 O with a high signal/noise ratio (2500 at the absorbance equal 1) were recorded with a Bruker IFS 125 FTIR spectrometer covering…”
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  2. 2

    Measurements and calculations of air-broadening and shift parameters of water vapour transitions in a wide spectral region by Petrova, T. M., Solodov, A. M., Solodov, A. A., Deichuli, V. M., Starikov, V. I.

    Published in Molecular physics (19-05-2021)
    “…The water vapour line broadening (γ) and shifting (δ) coefficients for 212 lines of eight vibrational bands, namely, ν 2  + ν 3 , 2ν 2  + ν 3 , 3ν 2  + ν 3 -ν…”
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  3. 3

    Study of the H2O dipole moment and polarisability vibrational dependence by the analysis of rovibrational line shifts by Starikov, V.I., Petrova, T.M., Solodov, A.M., Solodov, A.A., Deichuli, V.M.

    “…The study of the H2O dipole moment μ and polarisability α vibrational dependence is based on the comparison of experimental and calculated line shifts induced…”
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  4. 4

    Transmission Spectrum of Nanoporous Aerogel Filled with SO2 and a Mixture of H2O and SO2 Vapors by Ponomarev, Yu. N., Solodov, A. A., Solodov, A. M., Kuraeva, T. E.

    Published in Atmospheric and oceanic optics (01-12-2023)
    “…— The transmission spectra of aerogel with nanopores filled with SO 2 and a mixture of H 2 O and SO 2 are studied. The measurements were carried out using a…”
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  5. 5

    Water Molecule Absorption Line Intensities in the IR Spectral Region by Deichuli, V. M., Petrova, T. M., Solodov, A. M., Solodov, A. A.

    Published in Atmospheric and oceanic optics (01-12-2023)
    “…H 2 O absorption lines broadened by air pressure were recorded at an IFS 125HR Fourier spectrometer in the 3000–7500 cm −1 spectral region. The H 2 O…”
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  6. 6

    Parameters of Absorption Lines of Water Molecules in the Spectral Region of 4500–4700 cm–1 by Deichuli, V. M., Petrova, T. M., Solodov, A. M., Solodov, A. A., Chesnokova, T. Yu, Chentsov, A. V.

    Published in Russian Journal of Physical Chemistry A (01-05-2024)
    “…The absorption lines of the water molecule, broadened by atmospheric air pressure, were recorded in the region of 4500–4700 cm –1 on an IFS 125 HR Fourier…”
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  7. 7

    Broadening and Shift Coefficients of Water Absorption Lines Induced by Carbon Dioxide Pressure near 2.7 μm by Deichuli, V. M., Petrova, T. M., Solodov, A. A., Solodov, A. M.

    Published in Atmospheric and oceanic optics (01-12-2022)
    “…The H 2 O absorption lines broadened by the carbon dioxide pressure were recorded with a IFS 125 HR Fourier spectrometer in the 3760–4160 cm −1 spectral…”
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  8. 8

    Analysis of the He-, Ar- and Kr-broadening coefficients of water vapor transitions in a wide spectral region by Starikov, V.I., Petrova, T.M., Solodov, A.M., Solodov, A.A., Deichuli, V.M.

    “…An analysis of the measured He-, Ar- and Kr- broadening coefficients γ for 1575 water vapor transitions of 27 vibrational bands belonging to the…”
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  9. 9

    Wind Effect on H2O Absorption Lines Perturbed by He, Ar, Kr, and Xe Pressure by Starikov, V. I., Petrova, T. M., Solodov, A. M., Solodov, A. A., Deichuli, V. M.

    Published in Atmospheric and oceanic optics (2024)
    “…The effect of two factors, i.e., the dependence of the broadening coefficients γ and shifting coefficient δ on the speed of absorbing water vapor molecule…”
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  10. 10

    IR spectroscopy of water vapor confined in nanoporous silica aerogel by Ponomarev, Yu N, Petrova, T M, Solodov, A M, Solodov, A A

    Published in Optics express (06-12-2010)
    “…The absorption spectrum of the water vapor, confined in the nanoporous silica aerogel, was measured within 5000-5600 cm(-1) with the IFS 125 HR Fourier…”
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  11. 11

    Experimental and Theoretical Analysis of the Broadening and Shift of H2O Absorption Lines by Monatomic Gases in a Wide Spectral Range by Starikov, V. I., Petrova, T. M., Solodov, A. M., Solodov, A. A., Deichuli, V. M.

    Published in Atmospheric and oceanic optics (01-10-2023)
    “…The results obtained at the Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Sciences, and abroad in studying the broadening and shifts of…”
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  12. 12

    FTIR spectroscopy of 2-0 band of carbon monoxide confined in silica aerogels with different pore sizes by Solodov, A. A., Petrova, T. M., Ponomarev, Yu. N., Solodov, A. M., Danilyuk, A. F.

    Published in Molecular physics (02-01-2019)
    “…The absorption spectra of carbon monoxide confined in three aerogel samples with different pore sizes have been recorded within the 4100-4400 cm -1 spectral…”
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  13. 13

    Fourier Transform Spectroscopy of CO and CO2 Confined in Aerogel Nanopores in the Near-IR Range by Solodov, A. A., Petrova, T. M., Ponomarev, Yu. N., Solodov, A. M.

    Published in Atmospheric and oceanic optics (01-05-2021)
    “…— The 3–0 absorption band of carbon monoxide and the 2 0 0 13–0 0 0 01 band of carbon dioxide confined in aerogel were recorded using a Bruker IFS 125HR FTIR…”
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  14. 14

    Rotational dependences of line half-widths for CO and CO2 confined in SiO2/Al2O3 xerogel by Solodov, A. A., Petrova, T. M., Ponomarev, Yu. N., Solodov, A. M., Glazkova, E. A.

    Published in Molecular physics (18-07-2017)
    “…The absorption spectra of CO and CO 2 confined in nanopores of SiO 2 /Al 2 O 3 xerogel have been measured using a Bruker IFS-125 HR Fourier spectrometer…”
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  15. 15

    Absorption Spectrum of Carbon Dioxide in the 4350–4550 cm–1 Region by Marinina, A. A., Borkov, Yu. G., Petrova, T. M., Solodov, A. M., Solodov, A. A., Perevalov, V. I.

    Published in Atmospheric and oceanic optics (2022)
    “…The absorption spectrum of a natural sample of carbon dioxide in the 4350–4550 cm –1 region was recorded at the V.E. Zuev Institute of Atmospheric Optics,…”
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  16. 16

    Comparison of Profile Models for Water Vapor Absorption Lines by Petrova, T. M., Solodov, A. M., Shcherbakov, A. P., Deichuli, V. M., Solodov, A. A., Ponomarev, Yu. N.

    Published in Atmospheric and oceanic optics (01-07-2021)
    “…The absorption spectra of a water molecule perturbed by argon pressure were measured in the 6700–7650 cm −1 region. The spectra were recorded at an IFS 125HR…”
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  17. 17

    Rotational Dependence of Line Halfwidth for the Fundamental Band 0 0 0 11–0 0 0 01 of CO2 Confined in Nanoporous Aerogel: New Measurements by Solodov, A. A., Petrova, T. M., Ponomarev, Yu. N., Solodov, A. M., Shalygin, A. S.

    Published in Atmospheric and oceanic optics (01-11-2020)
    “…The absorption spectra of carbon dioxide confined in an aerogel sample with pore sizes of 60 nm have been recorded at room temperature in the 2250–2400 cm −1…”
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  18. 18

    H2O Absorption Line Parameters in the 5900–6100-cm−1 Spectral Region by Deichuli, V. M., Petrova, T. M., Solodov, A. M., Solodov, A. A., Chesnokova, T. Yu, Trifonova-Yakovleva, A. M.

    Published in Atmospheric and oceanic optics (2021)
    “…H 2 O absorption lines broadened by air pressure were recorded in the 5900–6100-cm −1 spectral region with the use of a Bruker IFS 125 HR spectrometer. The…”
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  19. 19

    Controlled spectral translucence of nanoporous SiO2/Al2O3 xerogel filled with ammonia and acetone by Petrova, T. M., Ponomarev, Yu. N., Solodov, A. A., Solodov, A. M., Glazkova, E. A.

    Published in JETP letters (01-05-2017)
    “…The near infrared transmission spectra of nanoporous SiO 2 /Al 2 O 3 xerogel have been recorded for the first time in the process of filling of nanopores with…”
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  20. 20

    Influence of Aerogel Texture on Spectral Line Parameters of CO Confined Inside Aerogel Pores by Solodov, A. A., Ponomarev, Yu. N., Petrova, T. M., Solodov, A. M., Glazkova, E. A.

    Published in Atmospheric and oceanic optics (01-07-2019)
    “…The influence of sintering of an aerogel sample on spectral line parameters of carbon monoxide confined inside aerogel pores is studied for the first time. The…”
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