A novel discrete variable representation (DVR) is introduced for use as the L2 basis of the S‐matrix version of the Kohn variational method [Zhang, Chu, and Miller, J. Chem. Phys. 88, 6233 (1988)] for quantum reactive scattering. (It can also be readily used for quantum eigenvalue problems.) The primary novel feature is that this DVR gives an extremely simple kinetic energy matrix (the potential energy matrix is diagonal, as in all DVRs) which is in a sense ''universal,'' i.e., independent of any explicit reference to an underlying set of basis functions; it can, in fact, be derived as an infinite limit using different basis functions. An energy truncation procedure allows the DVR grid points to be adapted naturally to the shape of any give...
Cumulative reaction probability plays a central role in the calculation of reaction rate...
A new approach is described to the evaluation of the S-matrix in three-dimensional atom-diatom react...
The log derivative version of the Kohn variational principle is reviewed in the context of a general...
A method is proposed for reducing the complexity of scattering calculations carried out using the Ko...
A method for carring out quantum-mechanical scattering calculations (J. Chem. Phys. 86 (1987) 62 13)...
It has recently been discovered that the S-matrix version of the Kohn variational principle is free ...
The log derivative version of the Kohn variational principle is reviewed in the context of a general...
The log derivative version of the Kohn variational principle is reviewed in the context of a general...
The log derivative version of Kohn's variational principle is used as a setting for a new numerical ...
A new translational basis set is introduced for quantum reactive scattering calculations that use th...
This is the published version, also available here: http://dx.doi.org/10.1063/1.454462.The S‐matrix ...
This is the published version, also available here: http://dx.doi.org/10.1063/1.454462.The S‐matrix ...
Fully converged state-to-state integral cross sections are reported for rhe reaction H + H2(uI =I, =...
Cumulative reaction probability plays a central role in the calculation of reaction rate...
Manthe U, Ellerbrock R. S-matrix decomposition, natural reaction channels, and the quantum transitio...
Cumulative reaction probability plays a central role in the calculation of reaction rate...
A new approach is described to the evaluation of the S-matrix in three-dimensional atom-diatom react...
The log derivative version of the Kohn variational principle is reviewed in the context of a general...
A method is proposed for reducing the complexity of scattering calculations carried out using the Ko...
A method for carring out quantum-mechanical scattering calculations (J. Chem. Phys. 86 (1987) 62 13)...
It has recently been discovered that the S-matrix version of the Kohn variational principle is free ...
The log derivative version of the Kohn variational principle is reviewed in the context of a general...
The log derivative version of the Kohn variational principle is reviewed in the context of a general...
The log derivative version of Kohn's variational principle is used as a setting for a new numerical ...
A new translational basis set is introduced for quantum reactive scattering calculations that use th...
This is the published version, also available here: http://dx.doi.org/10.1063/1.454462.The S‐matrix ...
This is the published version, also available here: http://dx.doi.org/10.1063/1.454462.The S‐matrix ...
Fully converged state-to-state integral cross sections are reported for rhe reaction H + H2(uI =I, =...
Cumulative reaction probability plays a central role in the calculation of reaction rate...
Manthe U, Ellerbrock R. S-matrix decomposition, natural reaction channels, and the quantum transitio...
Cumulative reaction probability plays a central role in the calculation of reaction rate...
A new approach is described to the evaluation of the S-matrix in three-dimensional atom-diatom react...
The log derivative version of the Kohn variational principle is reviewed in the context of a general...