International audienceIn this work we present a theoretical and experimental study of the acetylene–hydrogen system. A potential surface considering rigid monomers has been obtained by ab initio quantum chemistry methods. This 4-dimensional potential is further employed to compute, using the close-coupling approach and the coupled-states approximation, pressure broadening coefficients of C2H2 isotropic Raman Q lines over a temperature range of 77 to 2000 K. Experimental data for the acetyleneν2 Raman lines broadened by molecular hydrogen are obtained using stimulated Raman spectroscopy. The comparison of theoretical values with experimental data at 143 K is promising. Approximations to increase the computational efficiency are proposed
International audienceWe present experimental nitrogen-broadening coefficients derived from Voigt pr...
We present experimental nitrogen-broadening coefficients derived from Voigt profiles of isotropic Ra...
International audienceWe use an accurate N2-H2ab initio potential energy surface (PES) in order to i...
International audienceIn this work we present a theoretical and experimental study of the acetylene–...
International audienceIn this work we present a theoretical and experimental study of the acetylene–...
International audienceIn this work we present a theoretical and experimental study of the acetylene–...
International audienceIn this work we present a theoretical and experimental study of the acetylene–...
International audienceQuantum close coupling (CC) calculations of H2-broadening coefficients of infr...
International audienceQuantum close coupling (CC) calculations of H2-broadening coefficients of infr...
International audienceQuantum close coupling (CC) calculations of H2-broadening coefficients of infr...
International audienceWe discuss the sensitivity of the pressure broadening cross-sections to the ch...
Using a high resolution Raman spectrometer, we have measured Ar-broadening coefficients in the v2 Q ...
International audienceA new semiempirical potential energy surface (PES) for the acetylene-hydrogen ...
International audienceTheoretical and experimental values have been determined for the pressure broa...
A new semiempirical potential energy surface (PES) for the acetylene-hydrogen system has been derive...
International audienceWe present experimental nitrogen-broadening coefficients derived from Voigt pr...
We present experimental nitrogen-broadening coefficients derived from Voigt profiles of isotropic Ra...
International audienceWe use an accurate N2-H2ab initio potential energy surface (PES) in order to i...
International audienceIn this work we present a theoretical and experimental study of the acetylene–...
International audienceIn this work we present a theoretical and experimental study of the acetylene–...
International audienceIn this work we present a theoretical and experimental study of the acetylene–...
International audienceIn this work we present a theoretical and experimental study of the acetylene–...
International audienceQuantum close coupling (CC) calculations of H2-broadening coefficients of infr...
International audienceQuantum close coupling (CC) calculations of H2-broadening coefficients of infr...
International audienceQuantum close coupling (CC) calculations of H2-broadening coefficients of infr...
International audienceWe discuss the sensitivity of the pressure broadening cross-sections to the ch...
Using a high resolution Raman spectrometer, we have measured Ar-broadening coefficients in the v2 Q ...
International audienceA new semiempirical potential energy surface (PES) for the acetylene-hydrogen ...
International audienceTheoretical and experimental values have been determined for the pressure broa...
A new semiempirical potential energy surface (PES) for the acetylene-hydrogen system has been derive...
International audienceWe present experimental nitrogen-broadening coefficients derived from Voigt pr...
We present experimental nitrogen-broadening coefficients derived from Voigt profiles of isotropic Ra...
International audienceWe use an accurate N2-H2ab initio potential energy surface (PES) in order to i...