Time-dependent wave packet calculations were carried out to stud, the exchange and abstraction processes in the title reaction on the Kurosaki-Takayanagi potential energy surface (Kurosaki, Y.; Takayanagi, T. J. Chem. Phys. 2003, 119, 7838). Total reaction probabilities and integral cross sections were calculated for the reactant HBr initially in the ground state, first rotationally excited state, and first vibrationally excited state for both the exchange and abstraction reactions. At low collision energy, only the abstraction reaction occurs because of its low barrier height. Once the collision energy exceeds the barrier height of the exchange reaction, the exchange process quickly becomes the dominant process presumably due to its larger...
In continuation of our earlier effort to understand the nonadiabatic coupling effects in the prototy...
In continuation of our earlier effort to understand the nonadiabatic coupling effects in the prototy...
We report rigorous quantum dynamics studies of the Cl+H-2 reaction. The time-dependent wave packet c...
The time-dependent wave packet method was used to calculate the state-to-state differential cross se...
Time-dependent quantum wave packet calculations were carried out for the F + HBr reaction on the lat...
An accurate global potential energy surface (PES) for the HBr2 system has been constructed using the...
An exact three-dimensional time-dependent quantum wave packet was employed to calculate the O(P-3) +...
Time-dependent quantum wave packet calculations have been performed for the H + DBr and D + HBr reac...
Three-dimensional time-dependent quantum wave packet calculation for the O(D-1) + HBr reaction has b...
The channel specific and initial state-selected reaction cross section and temperature-dependent rat...
The paper presents a theoretical study of the dynamics of the H + HCl system on the potential energy...
The time-dependent wave packet quantum method under centrifugal sudden (CS) approximation has been e...
Firstly, a full quantum dynamical study of the H+H2OH2+OH reaction for some initial states o...
The dynamics of the Cl + HD reaction has been studied by means of time-dependent quantum wave packet...
We present in this paper a time-dependent quantum wave packet calculation of the initial state selec...
In continuation of our earlier effort to understand the nonadiabatic coupling effects in the prototy...
In continuation of our earlier effort to understand the nonadiabatic coupling effects in the prototy...
We report rigorous quantum dynamics studies of the Cl+H-2 reaction. The time-dependent wave packet c...
The time-dependent wave packet method was used to calculate the state-to-state differential cross se...
Time-dependent quantum wave packet calculations were carried out for the F + HBr reaction on the lat...
An accurate global potential energy surface (PES) for the HBr2 system has been constructed using the...
An exact three-dimensional time-dependent quantum wave packet was employed to calculate the O(P-3) +...
Time-dependent quantum wave packet calculations have been performed for the H + DBr and D + HBr reac...
Three-dimensional time-dependent quantum wave packet calculation for the O(D-1) + HBr reaction has b...
The channel specific and initial state-selected reaction cross section and temperature-dependent rat...
The paper presents a theoretical study of the dynamics of the H + HCl system on the potential energy...
The time-dependent wave packet quantum method under centrifugal sudden (CS) approximation has been e...
Firstly, a full quantum dynamical study of the H+H2OH2+OH reaction for some initial states o...
The dynamics of the Cl + HD reaction has been studied by means of time-dependent quantum wave packet...
We present in this paper a time-dependent quantum wave packet calculation of the initial state selec...
In continuation of our earlier effort to understand the nonadiabatic coupling effects in the prototy...
In continuation of our earlier effort to understand the nonadiabatic coupling effects in the prototy...
We report rigorous quantum dynamics studies of the Cl+H-2 reaction. The time-dependent wave packet c...