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The Journal of Chemical Physics
|
October 3, 2015
Line mixing in parallel and perpendicular bands of CO2: A further test of the refined Robert-Bonamy formalism
C Boulet, Q Ma, R H Tipping
Applied Optics
|
June 5, 2010
Line shape in the low-frequency wing of N(2) and O(2) broadened CO(2) lines
V Menoux, R L Doucen, C Boulet
The Journal of Chemical Physics
|
March 10, 2011
Molecular dynamics simulations for CO2 spectra. II. The far infrared collision-induced absorption band
J-M Hartmann, C Boulet, D Jacquemart
The Journal of Chemical Physics
|
March 18, 2014
Two dimensional symmetric correlation functions of the Ŝ operator and two dimensional Fourier transforms: considering the line coupling for P and R lines of linear molecules
Q Ma, C Boulet, R H Tipping
The Journal of Chemical Physics
|
January 18, 2006
Irreducible correlation functions of the S matrix in the coordinate representation: application in calculating Lorentzian half-widths and shifts
Q Ma, R H Tipping, C Boulet
The Journal of Chemical Physics
|
July 23, 2004
Infrared line collisional parameters of HCl in argon, beyond the impact approximation: measurements and classical path calculations
C Boulet, P-M Flaud, J-M Hartmann
Journal of Chromatography. A
|
September 16, 1999
Determination of tartaric acid in solid wine residues by capillary electrophoresis and indirect UV detection
S Mallet, M Arellano, J C Boulet, et al.
Applied Optics
|
June 29, 2010
Line shape in the low frequency wing of self- and N(2)-broadened v(3) CO(2) lines: temperature dependence of the asymmetry
V Menoux, R L Doucen, J Boissoles, et al.
Applied Optics
|
April 17, 2010
Method for the simultaneous determination of line strengths and collisional widths from high-resolution Fourier transform spectra
N Lacome, A Levy, C Boulet, et al.
Applied Optics
|
May 7, 2010
Temperature dependence of the absorption in the region beyond the 4.3-microm band head of CO(2) . 2: N(2) and O(2) broadening
C Cousin, R L Doucen, C Boulet, et al.
Page
of 5
Search research articles
Search
Showing results (11-20 of 44) with videos related to
Sort By:
Page
of 5
The Journal of Chemical Physics
|
October 3, 2015
Line mixing in parallel and perpendicular bands of CO2: A further test of the refined Robert-Bonamy formalism
C Boulet, Q Ma, R H Tipping
Applied Optics
|
June 5, 2010
Line shape in the low-frequency wing of N(2) and O(2) broadened CO(2) lines
V Menoux, R L Doucen, C Boulet
The Journal of Chemical Physics
|
March 10, 2011
Molecular dynamics simulations for CO2 spectra. II. The far infrared collision-induced absorption band
J-M Hartmann, C Boulet, D Jacquemart
The Journal of Chemical Physics
|
March 18, 2014
Two dimensional symmetric correlation functions of the Ŝ operator and two dimensional Fourier transforms: considering the line coupling for P and R lines of linear molecules
Q Ma, C Boulet, R H Tipping
The Journal of Chemical Physics
|
January 18, 2006
Irreducible correlation functions of the S matrix in the coordinate representation: application in calculating Lorentzian half-widths and shifts
Q Ma, R H Tipping, C Boulet
The Journal of Chemical Physics
|
July 23, 2004
Infrared line collisional parameters of HCl in argon, beyond the impact approximation: measurements and classical path calculations
C Boulet, P-M Flaud, J-M Hartmann
Journal of Chromatography. A
|
September 16, 1999
Determination of tartaric acid in solid wine residues by capillary electrophoresis and indirect UV detection
S Mallet, M Arellano, J C Boulet, et al.
Applied Optics
|
June 29, 2010
Line shape in the low frequency wing of self- and N(2)-broadened v(3) CO(2) lines: temperature dependence of the asymmetry
V Menoux, R L Doucen, J Boissoles, et al.
Applied Optics
|
April 17, 2010
Method for the simultaneous determination of line strengths and collisional widths from high-resolution Fourier transform spectra
N Lacome, A Levy, C Boulet, et al.
Applied Optics
|
May 7, 2010
Temperature dependence of the absorption in the region beyond the 4.3-microm band head of CO(2) . 2: N(2) and O(2) broadening
C Cousin, R L Doucen, C Boulet, et al.
Page
of 5