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S.A. Tashkun

Researcher at Russian Academy of Sciences

Publications -  86
Citations -  4925

S.A. Tashkun is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: HITRAN & Isotopologue. The author has an hindex of 26, co-authored 86 publications receiving 4344 citations. Previous affiliations of S.A. Tashkun include Pierre-and-Marie-Curie University & Ural Federal University.

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Infrared spectra of the 16O12C17O and 16O12C18O species of carbon dioxide: II. The 1500-3000 cm-1 region

TL;DR: In this paper, the eigenfunctions of the effective Hamiltonians were used to fit the corresponding effective dipole moment operators to more than 400 observed line intensities of cold and hot bands covering the ν3 and 2ν1 spectral regions.
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Highly sensitive absorption spectroscopy of carbon dioxide by ICLAS-VeCSEL between 8800 and 9530 cm−1

TL;DR: In this paper, the absorption spectrum of carbon dioxide has been studied between 8800 and 9530 cm −1 by intracavity laser absorption spectroscopy based on a vertical external cavity surface emitting lasers (VeCSEL).
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Isotopic shifts in vibration levels of ozone due to homogeneous substitution : Band centres of 18O3 derived from analysis of CW-CRDS spectra in the 5900-7000 cm-1 range

TL;DR: More than 5050 rovibrational transitions were assigned in the very sensitive CW-CRDS 18 O 3 spectra in the 5900-7000 cm −1 range leading to the first determination of 14 new vibrational band centres as discussed by the authors.
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High sensitivity CW-Cavity Ring Down Spectroscopy of N2O between 6950 and 7653 cm−1 (1.44–1.31 μm): II. Line intensities

TL;DR: Lu et al. as mentioned in this paper reported the assignment of more than 7200 N2O lines in the region and derived the corresponding spectroscopic parameters Gv, Bv, Dv and Hv.
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Measurements of 12C16O2 line parameters in the 8790–8860, 9340–9650 and 11,430–11,505 cm−1 wavenumber regions by means of Fourier transform spectroscopy

TL;DR: In this paper, the authors used the multispectrum fittings with the Voigt profile to retrieve the line positions and intensities of eight bands 5001r−00001 (r=3, 4, 4), 2003r−00011(r=1,2,3) 2113r−01101 (r = 1,2) and 00051−0000 1(r = 3,4) bands.