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Vl.G. Tyuterev

Researcher at University of Reims Champagne-Ardenne

Publications -  162
Citations -  12871

Vl.G. Tyuterev is an academic researcher from University of Reims Champagne-Ardenne. The author has contributed to research in topics: Rotational–vibrational spectroscopy & Transition dipole moment. The author has an hindex of 38, co-authored 153 publications receiving 12084 citations. Previous affiliations of Vl.G. Tyuterev include Tomsk State University & Russian Academy of Sciences.

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The CW-CRDS spectra of the 16O/18O isotopologues of ozone between 5930 and 6340 cm−1. Part 2: 16O18O16O

TL;DR: Mondelain et al. as mentioned in this paper reported the analysis of four bands of 16O18O16O of C2V symmetry, vibrationally assigned as 2ν1+2ν2+3ν3_1.
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Analysis of the first triad of interacting states (020), (100), and (001) of D216O from hot emission spectra

TL;DR: In this paper, more than 3550 new measured lines for the D216O molecule corresponding to transitions from highly excited rotational levels of the (0,2,0), (1,0,0) and (0,0,1) vibrational states are reported.
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Ab initio predictions and laboratory validation for consistent ozone intensities in the MW, 10 and 5 μm ranges.

TL;DR: Ab initio calculations for strong lines that lead to consistent results from the microwave to mid-infrared regions are presented and their agreement to within 1% with measurements provide an important step toward consistent and accurate spectroscopic ozone data.
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An efficient method for energy levels calculation using full symmetry and exact kinetic energy operator: tetrahedral molecules.

TL;DR: This work proposes a efficient method that permits a fast convergence of variational calculations to be applied to tetrahedral AB4 molecules for which a use of high symmetry is crucial for vibrational calculations.
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The CW-CRDS spectra of the 16O/18O isotopologues of ozone between 5930 and 6340 cm−1—Part 3: 16O18O18O and 18O16O18O

TL;DR: In this article, the CW-Cavity Ring Down Spectra of 16O/18O ozone isotopologues at high vibrational excitation has been studied and the analysis of the same four bands of the 16O16O18O and 16O18 o18O16 o16O species in the 5930-6340 cm−1 domain has been conducted.