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20 results on '"Thibault, F."'

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1. Rotational excitation of CO2 induced by He: New potential energy surface and scattering calculations.

2. High-precision cavity-enhanced spectroscopy for studying the H2–Ar collisions and interactions.

3. Low-temperature inelastic collisions between hydrogen molecules and helium atoms.

4. Rotranslational state-to-state rates and spectral representation of inelastic collisions in low-temperature molecular hydrogen.

5. Inelastic collisions in para-H2: Translation-rotation state-to-state rate coefficients and cross sections at low temperature and energy.

6. Experimental and theoretical study of line mixing in NH[sub 3] spectra. II. Effect of the perturber in infrared parallel bands.

7. Experimental and theoretical determination of rotational-translational state-to-state rate constants for N[sub 2]:He collisions at low temperature (3<T<20 K).

8. Raman and infrared linewidths of CO in Ar.

9. Experimental and theoretical study of line mixing in NH[sub 3] spectra. I. Scaling analysis of parallel bands perturbed by He.

10. Temperature dependence of line mixing effects in the stimulated Raman Q-branch of CO in He: A further test of close coupling calculations.

11. Energy corrected sudden calculations of linewidths and line shapes based on coupled states cross....

12. Line mixing effects in the 0003–0000 band of CO2 in helium. III. Energy corrected sudden simultaneous fit of linewidths and near wing profile.

13. Line mixing effects in the 00°3–00°0 band of CO2 in helium. I. Experiment.

14. Line mixing effects in the 00°3–00°0 band of CO2 in helium. II. Theoretical analysis.

15. Line-by-line measurements of interference parameters for the 0–1 and 0–2 bands of CO in He, and comparison with coupled-states calculations.

16. Pressure induced shifts of CO2 lines: Measurements in the 0003–0000 band and theoretical analysis.

17. Inelastic collisions in molecular nitrogen at low temperature (2<=T<=50 K).

18. Velocity-changing collisions in pure H² and H²-Ar mixture.

19. Close coupling calculations for rotational relaxation of CO in argon: Accuracy of energy corrected sudden scaling procedures and comparison with experimental data.

20. Shifting and broadening in the fundamental band of CO highly diluted in He and Ar: A comparison with theory.

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