We employ the initial state-selected time-dependent wave packet approach to an atom-triatom reaction to study the H + HOD -> OH + HD/OD + H-2 reaction without the centrifugal sudden approximation, based on an accurate potential energy surface which was recently developed by neural network fitting to high level ab initio energy points. The total reaction probabilities and integral cross sections, which are the exact coupled-channel results, are calculated for the HOD reactant initially in the ground and several vibrationally excited states, including the bending excited state, OD stretching excited states, OH stretching excited states, and combined excitations of them. The reactivity enhancements from different initial states of HOD are pres...
The time-dependent wave-packet method was employed to calculate the first full-dimensional state-to-...
Time-dependent quantum wavepacket calculations for the H+HCN reaction are carried out on the ab init...
We survey the recent advances in theoretical understanding of quantum state resolved dynamics, using...
The initial state-selected time-dependent wave packet approach to an atom-triatom reaction is employ...
The initial state-selected time-dependent wave packet approach to an atom-triatom reaction is employ...
Firstly, a full quantum dynamical study of the H+H2OH2+OH reaction for some initial states o...
The initial state-selected time-dependent wave packet approach is employed to study the H' + H2O -> ...
Calculations of vibrationally state-selected cross sections are reported for the H+HOD→H2+OD reactio...
The state-to-state quantum dynamics (J(tot) = 0) of the HD + OH(upsilon(2) = 0,1) reaction is studie...
Full-dimensional quantum dynamical calculations are carried out to study the mode specificity, bond ...
Full-dimensional quantum dynamical calculations are carried out to study the mode specificity, bond ...
This work performs a time-dependent wavepacket study of the H-2 + C2H -> H + C2H2 reaction on a new ...
Zhao B, Manthe U, Guo H. Fermi resonance controlled product branching in the H plus HOD reaction. PH...
A time-dependent quantum dynamics calculation is reported for the O(nD)+ H 2 reaction in three dimen...
We present exact coupled-channel (CC) results of full-dimensional quantum mechanical calculations fo...
The time-dependent wave-packet method was employed to calculate the first full-dimensional state-to-...
Time-dependent quantum wavepacket calculations for the H+HCN reaction are carried out on the ab init...
We survey the recent advances in theoretical understanding of quantum state resolved dynamics, using...
The initial state-selected time-dependent wave packet approach to an atom-triatom reaction is employ...
The initial state-selected time-dependent wave packet approach to an atom-triatom reaction is employ...
Firstly, a full quantum dynamical study of the H+H2OH2+OH reaction for some initial states o...
The initial state-selected time-dependent wave packet approach is employed to study the H' + H2O -> ...
Calculations of vibrationally state-selected cross sections are reported for the H+HOD→H2+OD reactio...
The state-to-state quantum dynamics (J(tot) = 0) of the HD + OH(upsilon(2) = 0,1) reaction is studie...
Full-dimensional quantum dynamical calculations are carried out to study the mode specificity, bond ...
Full-dimensional quantum dynamical calculations are carried out to study the mode specificity, bond ...
This work performs a time-dependent wavepacket study of the H-2 + C2H -> H + C2H2 reaction on a new ...
Zhao B, Manthe U, Guo H. Fermi resonance controlled product branching in the H plus HOD reaction. PH...
A time-dependent quantum dynamics calculation is reported for the O(nD)+ H 2 reaction in three dimen...
We present exact coupled-channel (CC) results of full-dimensional quantum mechanical calculations fo...
The time-dependent wave-packet method was employed to calculate the first full-dimensional state-to-...
Time-dependent quantum wavepacket calculations for the H+HCN reaction are carried out on the ab init...
We survey the recent advances in theoretical understanding of quantum state resolved dynamics, using...