The ab initio potential energy surface (PES) already computed for the title system is employed here to study the behaviour of the collisional energy transfer processes over a broad range of energies. The quantum evaluation of rotationally and vibrationally inelastic partial integral cross sections is carried out under different angular momentum coupling conditions and the results are closely analysed in terms of the specific features of the coupling PES. State-to-state rate constants for excitation and relaxation processes are obtained in a broad range of temperatures and the overall efficiency of the collisional energy transfer is analysed. The cooperative effect between the rotational anisotropy and the vibrational excitations is clearly ...
The interaction between LiH and H has been calculated using a Coupled Cluster approach in view of ex...
A recent set of experimental data which Save new state-to-state He-CO rotationally inelastic integra...
International audienceFrom a new two-dimensional Potential Energy Surface (PES), rotational excitati...
The ab initio potential energy surface (PES) already computed for the title system is employed here ...
The ab initio potential energy surface (PES) already computed for the title system is employed here ...
The ab initio potential energy surface (PES) already computed for the title system is employed here ...
The ab initio potential energy surface (PES) already computed for the title system is employed here ...
The ab initio potential energy surface (PES) already computed for the title system is employed here ...
The full Born-Oppenheimer (BO) potential energy surface that describes the interaction between a vib...
The full Born-Oppenheimer (BO) potential energy surface that describes the interaction between a vib...
The full Born-Oppenheimer (BO) potential energy surface that describes the interaction between a vib...
The full Born-Oppenheimer (BO) potential energy surface that describes the interaction between a vib...
A quantum mechanical investigation of vibrational and rotational energy transfer in cold and ultra c...
The interaction between LiH and H has been calculated using a Coupled Cluster approach in view of ex...
The interaction between LiH and H has been calculated using a Coupled Cluster approach in view of ex...
The interaction between LiH and H has been calculated using a Coupled Cluster approach in view of ex...
A recent set of experimental data which Save new state-to-state He-CO rotationally inelastic integra...
International audienceFrom a new two-dimensional Potential Energy Surface (PES), rotational excitati...
The ab initio potential energy surface (PES) already computed for the title system is employed here ...
The ab initio potential energy surface (PES) already computed for the title system is employed here ...
The ab initio potential energy surface (PES) already computed for the title system is employed here ...
The ab initio potential energy surface (PES) already computed for the title system is employed here ...
The ab initio potential energy surface (PES) already computed for the title system is employed here ...
The full Born-Oppenheimer (BO) potential energy surface that describes the interaction between a vib...
The full Born-Oppenheimer (BO) potential energy surface that describes the interaction between a vib...
The full Born-Oppenheimer (BO) potential energy surface that describes the interaction between a vib...
The full Born-Oppenheimer (BO) potential energy surface that describes the interaction between a vib...
A quantum mechanical investigation of vibrational and rotational energy transfer in cold and ultra c...
The interaction between LiH and H has been calculated using a Coupled Cluster approach in view of ex...
The interaction between LiH and H has been calculated using a Coupled Cluster approach in view of ex...
The interaction between LiH and H has been calculated using a Coupled Cluster approach in view of ex...
A recent set of experimental data which Save new state-to-state He-CO rotationally inelastic integra...
International audienceFrom a new two-dimensional Potential Energy Surface (PES), rotational excitati...