The XIX Symposium on High Resolution Molecular Spectroscopy

July 01-05, 2019, Nizhny Novgorod

Participant Organizations

Organization: V.E. Zuev Institute of Atmospheric Optics SB RAS, Tomsk, Russia

List of reports:

  1. Ptashnik I.V., Solodov A.A., Solodov A.M.
    FTS measurements of the water vapour continuum absorption in 2.1 micron atmospheric window  
  2. Koshelev M.A., Vilkov I.N., Nikitin A.V., Egorov O.V., Rey M., Tyuterev Vl.G.
    High sensitive study of methane rotational spectrum in the subTHz region and new ground state constants of CH3D
  3. Odintsova T.A., Tretyakov M.Yu., Simonova A.A., Ptashnik I.V., Pirali O., Campargue A.
    Water vapor self-continuum absorption in the range of 50-650 cm-1
  4. Barbe A., Mikhailenko S.N.
    Interpolyad interactions of ozone vibrational states near 4000 cm-1
  5. Velichko T.I., Sulakshina O.N., Borkov Y.G.
    RKR potentials of 14N16O and 16OH molecules in the ground electronic state
  6. Voronin B.A., Mikhailenko S.N.
    Comparison of the VoTe line list against GEISA2015 and HITRAN2016 data bases and experimental spectra of water vapor
  7. Vasilenko I.A., Naumenko O.V.
    Empirical list of absorption lines of the SO2 and H2S
  8. Troitsyna L., Buldyreva J., Dudaryonok A.S., Lavrentieva N.N., Filippov N.N.
    Temperature dependence of methyl-iodine collisional parameters studied by semi- classical and semi-empirical approaches
  9. Vasilenko I.A., Naumenko O.V., Horneman V.-M.
    FT high-resolution spectrum of SO2 molecule between 3540 and 3670 cm-1  
  10. Fazliev A.Z., Naumenko O.V., Kozodoev A.V., Lavrentiev N.A.
    Experimental and calculated intensities of water isotopologues
  11. Vasilenko I.A., Serdyukov V.I., Sinitsa L.N., Naumenko O.V., Kyuberis A.A., Zobov N.F., Polyansky O.L.
    LED-Based Fourier transform spectroscopy of H216O in 14800-15600 cm-1 spectral region
  12. Babikov Yu.L., Nikitin A.V., Rodina A., Starikova E., Rey M., Viglaska D., Chizhmakova I.S., Sheremet N., Tretiakov A., Egorov O.V., Tyuterev Vl.G.
    Current status of the TheoReTS information system: infrared spectra of 4-7 atomic molecules computed from high accuracy potential energy and dipole moment surfaces
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