State-to-state quantum dynamic calculations for the proton transfer reaction Ne + H-2(+) (v = 0-2, j = 0) are performed on the most accurate LZHH potential energy surface, with the product Jacobi coordinate based time-dependent wave packet method including the Coriolis coupling. The J = 0 reaction probabilities for the title reaction agree well with previous results in a wide range of collision energy of 0.2-1.2 eV. Total integral cross sections are in reasonable agreement with the available experiment data. Vibrational excitation of the reactant is much more efficient in enhancing the reaction cross sections than translational and rotational excitation. Total differential cross sections are found to be forward-backward peaked with strong o...
Time-dependent quantum mechanical wave packet calculations have been carried out to study ...
The quantum wave packet dynamics of the title reaction within the coupled state approximation is exa...
The time-dependent wave packet method was used to calculate the state-to-state differential cross se...
11 págs.; 11 figs.; 2 tabs.The dynamics of the Ne + HeH(v = 0, j = 0) → NeH(v', j') + He reaction wa...
We present a new potential energy surface (PES) for the ground state (1(2)A(')) of the chemical reac...
Quantum state-to-state dynamics of the N(4~S)+H_2(X~1∑~+)→NH(X~3∑~-)+H(~2S) reaction is reported in ...
Quantum state-to-state dynamics of the N(4~S)+H_2(X~1∑~+)→NH(X~3∑~-)+H(~2S) reaction is reported in ...
The reaction of NeH2+ system plays an important role in Ion-molecule reactions. Several quantum dyna...
Quantum state-to-state dynamics of the N(S-4) + H-2(X-1 Sigma(+)) -> NH(X-3 Sigma(-)) + H(S-2) react...
This work presents results of quantum mechanical calculations of reaction probabilities for the ion-...
The quantum scattering dynamics calculation was carried out for the titled reaction in the collision...
12 págs.; 12 figs.; 1 tab.; Special Issue: Dynamics of Molecular Collisions XXV: Fifty Years of Chem...
The time-dependent wave packet method has been used to calculate initial state selected reaction pro...
Real wave packet, statistical quantum, and quasiclassical trajectory methods were employed to study ...
State-to-state quantum dynamics calculations for the H + LiH (v = 0-1, j = 0) -> H-2 + Li reactions ...
Time-dependent quantum mechanical wave packet calculations have been carried out to study ...
The quantum wave packet dynamics of the title reaction within the coupled state approximation is exa...
The time-dependent wave packet method was used to calculate the state-to-state differential cross se...
11 págs.; 11 figs.; 2 tabs.The dynamics of the Ne + HeH(v = 0, j = 0) → NeH(v', j') + He reaction wa...
We present a new potential energy surface (PES) for the ground state (1(2)A(')) of the chemical reac...
Quantum state-to-state dynamics of the N(4~S)+H_2(X~1∑~+)→NH(X~3∑~-)+H(~2S) reaction is reported in ...
Quantum state-to-state dynamics of the N(4~S)+H_2(X~1∑~+)→NH(X~3∑~-)+H(~2S) reaction is reported in ...
The reaction of NeH2+ system plays an important role in Ion-molecule reactions. Several quantum dyna...
Quantum state-to-state dynamics of the N(S-4) + H-2(X-1 Sigma(+)) -> NH(X-3 Sigma(-)) + H(S-2) react...
This work presents results of quantum mechanical calculations of reaction probabilities for the ion-...
The quantum scattering dynamics calculation was carried out for the titled reaction in the collision...
12 págs.; 12 figs.; 1 tab.; Special Issue: Dynamics of Molecular Collisions XXV: Fifty Years of Chem...
The time-dependent wave packet method has been used to calculate initial state selected reaction pro...
Real wave packet, statistical quantum, and quasiclassical trajectory methods were employed to study ...
State-to-state quantum dynamics calculations for the H + LiH (v = 0-1, j = 0) -> H-2 + Li reactions ...
Time-dependent quantum mechanical wave packet calculations have been carried out to study ...
The quantum wave packet dynamics of the title reaction within the coupled state approximation is exa...
The time-dependent wave packet method was used to calculate the state-to-state differential cross se...