A method is presented for accurately solving the Schrödinger equation for the reactive collision of an atom with a diatomic molecule in three dimensions on a single Born–Oppenheimer potential energy surface. The Schrödinger equation is first expressed in body‐fixed coordinates. The wavefunction is then expanded in a set of vibration–rotation functions, and the resulting coupled equations are integrated in each of the three arrangement channel regions to generate primitive solutions. Next, these are smoothly matched to each other on three matching surfaces which appropriately separate the arrangement channel regions. The resulting matched solutions are linearly combined to generate wavefunctions which satisfy the reactance and scattering mat...
We have performed accurate quantum mechanical calculations for the coplanar H + H_2 exchange reacti...
A new method of generating basis functions for reactive and collision-induced dissociationthree-body...
We propose a method to steer the outcome of reactive atom-diatom scattering, using rotational wavep...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
Accurate three‐dimensional reactive and nonreactive quantum mechanical cross sections for the H+H_2 ...
A new approach is described to the evaluation of the S-matrix in three-dimensional atom-diatom react...
Two methods for solving the Schrödinger equation for one dimensional, three atom, electronically ad...
The results of an accurate quantum mechanical treatment of the planar H+H_2 exchange reaction on a r...
The results of an accurate quantum mechanical treatment of the planar H+H_2 exchange reaction on a r...
AbstractA new approach is described to the evaluation of the quantum scattering S-matrix in 3D atom-...
A method for carring out quantum-mechanical scattering calculations (J. Chem. Phys. 86 (1987) 62 13)...
We have performed accurate quantum mechanical calculations for the coplanar H + H_2 exchange reacti...
We have performed accurate quantum mechanical calculations for the coplanar H + H_2 exchange reacti...
We have performed accurate quantum mechanical calculations for the coplanar H + H_2 exchange reacti...
A new method of generating basis functions for reactive and collision-induced dissociationthree-body...
We propose a method to steer the outcome of reactive atom-diatom scattering, using rotational wavep...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
Accurate three‐dimensional reactive and nonreactive quantum mechanical cross sections for the H+H_2 ...
A new approach is described to the evaluation of the S-matrix in three-dimensional atom-diatom react...
Two methods for solving the Schrödinger equation for one dimensional, three atom, electronically ad...
The results of an accurate quantum mechanical treatment of the planar H+H_2 exchange reaction on a r...
The results of an accurate quantum mechanical treatment of the planar H+H_2 exchange reaction on a r...
AbstractA new approach is described to the evaluation of the quantum scattering S-matrix in 3D atom-...
A method for carring out quantum-mechanical scattering calculations (J. Chem. Phys. 86 (1987) 62 13)...
We have performed accurate quantum mechanical calculations for the coplanar H + H_2 exchange reacti...
We have performed accurate quantum mechanical calculations for the coplanar H + H_2 exchange reacti...
We have performed accurate quantum mechanical calculations for the coplanar H + H_2 exchange reacti...
A new method of generating basis functions for reactive and collision-induced dissociationthree-body...
We propose a method to steer the outcome of reactive atom-diatom scattering, using rotational wavep...