International audienceWe have studied the quantum dynamics of the N + OH → NO + H reaction for collision energies up to 0.7 eV. The hyperspherical method has been used in a time-independent formalism. State-to-state reaction probabilities for a total angular momentum J = 0 have been computed. The results show a high reactivity below 0.45 eV and a very small one above this collision energy. Rotational and vibrational product distributions are presented for three collision energies (0.05, 0.1, and 0.5 eV). The vibrational distributions are found to be noninverted at 0.1 eV and inverted peaking at other energies. Rotational distributions are rather hot even if some low rotational states are strongly populated. These features are consistent wit...
The product state-resolved dynamics of the photon-initiated reaction H+N2O→OH × (2Π3/2,v′,N′) + N2 h...
The state-to-state dynamics of the H+HD-->H-2+D reaction at a collisional energy of 0.5 eV was studi...
International audienceWe carried out a study of OH + H 2 scattering using a quantum-classical method...
International audienceWe have studied the quantum dynamics of the N + OH → NO + H reaction for colli...
International audienceWe present accurate quantum calculations of state-to-state cross sections for ...
International audienceQuasi-classical trajectory (QCT) calculations have been carried out for the re...
In the present work, the long-range interaction potential part of potential energy surface (PES) of ...
Quantum state-to-state dynamics of the N(S-4) + H-2(X-1 Sigma(+)) -> NH(X-3 Sigma(-)) + H(S-2) react...
The state-to-state quantum dynamics calculation for the reaction $\text{O}^{+}+\text{H}_{2} \to \tex...
The collision dynamics of deuterium molecule with excited-state nitrogen atom has been investigated ...
We present nonadiabatic quantum dynamical calculations on the two coupled potential energy surfaces ...
Quantum state-to-state dynamics of the N(4~S)+H_2(X~1∑~+)→NH(X~3∑~-)+H(~2S) reaction is reported in ...
Nonadiabatic quantum dynamics calculations on the two coupled potential energy surfaces (PESs) (12A0...
The quantum wave packet dynamics of the title reaction within the coupled state approximation is exa...
7 pages, 9 figuresWe use the time-independent quantum-mechanical formulation of reactive collisions ...
The product state-resolved dynamics of the photon-initiated reaction H+N2O→OH × (2Π3/2,v′,N′) + N2 h...
The state-to-state dynamics of the H+HD-->H-2+D reaction at a collisional energy of 0.5 eV was studi...
International audienceWe carried out a study of OH + H 2 scattering using a quantum-classical method...
International audienceWe have studied the quantum dynamics of the N + OH → NO + H reaction for colli...
International audienceWe present accurate quantum calculations of state-to-state cross sections for ...
International audienceQuasi-classical trajectory (QCT) calculations have been carried out for the re...
In the present work, the long-range interaction potential part of potential energy surface (PES) of ...
Quantum state-to-state dynamics of the N(S-4) + H-2(X-1 Sigma(+)) -> NH(X-3 Sigma(-)) + H(S-2) react...
The state-to-state quantum dynamics calculation for the reaction $\text{O}^{+}+\text{H}_{2} \to \tex...
The collision dynamics of deuterium molecule with excited-state nitrogen atom has been investigated ...
We present nonadiabatic quantum dynamical calculations on the two coupled potential energy surfaces ...
Quantum state-to-state dynamics of the N(4~S)+H_2(X~1∑~+)→NH(X~3∑~-)+H(~2S) reaction is reported in ...
Nonadiabatic quantum dynamics calculations on the two coupled potential energy surfaces (PESs) (12A0...
The quantum wave packet dynamics of the title reaction within the coupled state approximation is exa...
7 pages, 9 figuresWe use the time-independent quantum-mechanical formulation of reactive collisions ...
The product state-resolved dynamics of the photon-initiated reaction H+N2O→OH × (2Π3/2,v′,N′) + N2 h...
The state-to-state dynamics of the H+HD-->H-2+D reaction at a collisional energy of 0.5 eV was studi...
International audienceWe carried out a study of OH + H 2 scattering using a quantum-classical method...