We describe a time-dependent wavepacket based method for the calculation of the state-to-state cross sections for the Cl+H-2 reaction including all couplings arising from the nonzero spin and electronic orbital angular momenta of the Cl atom. Reactant-product decoupling allows us to use a physically correct basis in both the reactant and the product arrangements. Our calculated results agree well with the experimental results of Yang and co-workers. We also describe a model with two coupled potential energy surfaces, which includes the spin-orbit coupling, which is responsible for the largest non-Born-Oppenheimer effects in the Cl+H-2 reaction but neglects the off-diagonal electronically diabatic coupling and all Coriolis couplings due to t...
We present in this paper a time-dependent quantum wave packet calculation of the initial state selec...
The paper presents a theoretical study of the dynamics of the H + HCl system on the potential energy...
In this paper we present a time-dependent quantum wave packet calculation for the reaction of F(P-2(...
We describe a time-dependent wavepacket based method for the calculation of the state-to-state cross...
To investigate the relative reactivity of the two spin–orbit states of atomic Cl with molecular hydr...
We investigate the vibronic and spin-orbit (SO) coupling effects in the state-selected dynamics of t...
We present converged quantum scattering results for the Cl + HCl - ClH + Cl reaction in which the th...
Dynamical resonances in Cl(2P) + H2 scattering are investigated with the aid of a time-dependent wav...
Elementary triatomic reactions offer a compelling test of our understanding of the extent of electro...
To assess the relative reactivity of the spin-orbit excited state of atomic Cl with molecular hydrog...
The quantum dynamics of the Cl+D-2 reaction has been studied by means of time-dependent quantum wave...
We report rigorous quantum dynamics studies of the Cl+H-2 reaction. The time-dependent wave packet c...
The dynamics of the Cl + HD reaction has been studied by means of time-dependent quantum wave packet...
The dynamics of the title reaction are investigated using both time-dependent wave packet quantum sc...
Author Institution: Department of Chemistry, The Ohio State University, Columbus, OH 43210In the qua...
We present in this paper a time-dependent quantum wave packet calculation of the initial state selec...
The paper presents a theoretical study of the dynamics of the H + HCl system on the potential energy...
In this paper we present a time-dependent quantum wave packet calculation for the reaction of F(P-2(...
We describe a time-dependent wavepacket based method for the calculation of the state-to-state cross...
To investigate the relative reactivity of the two spin–orbit states of atomic Cl with molecular hydr...
We investigate the vibronic and spin-orbit (SO) coupling effects in the state-selected dynamics of t...
We present converged quantum scattering results for the Cl + HCl - ClH + Cl reaction in which the th...
Dynamical resonances in Cl(2P) + H2 scattering are investigated with the aid of a time-dependent wav...
Elementary triatomic reactions offer a compelling test of our understanding of the extent of electro...
To assess the relative reactivity of the spin-orbit excited state of atomic Cl with molecular hydrog...
The quantum dynamics of the Cl+D-2 reaction has been studied by means of time-dependent quantum wave...
We report rigorous quantum dynamics studies of the Cl+H-2 reaction. The time-dependent wave packet c...
The dynamics of the Cl + HD reaction has been studied by means of time-dependent quantum wave packet...
The dynamics of the title reaction are investigated using both time-dependent wave packet quantum sc...
Author Institution: Department of Chemistry, The Ohio State University, Columbus, OH 43210In the qua...
We present in this paper a time-dependent quantum wave packet calculation of the initial state selec...
The paper presents a theoretical study of the dynamics of the H + HCl system on the potential energy...
In this paper we present a time-dependent quantum wave packet calculation for the reaction of F(P-2(...