Efficient time-independent wave packet scattering calculations within a Lanczos subspace: H+O-2 (J=0) state-to-state reaction probabilities
Data(s) |
01/01/2002
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Resumo |
An efficient Lanczos subspace method has been devised for calculating state-to-state reaction probabilities. The method recasts the time-independent wave packet Lippmann-Schwinger equation [Kouri , Chem. Phys. Lett. 203, 166 (1993)] inside a tridiagonal (Lanczos) representation in which action of the causal Green's operator is affected easily with a QR algorithm. The method is designed to yield all state-to-state reaction probabilities from a given reactant-channel wave packet using a single Lanczos subspace; the spectral properties of the tridiagonal Hamiltonian allow calculations to be undertaken at arbitrary energies within the spectral range of the initial wave packet. The method is applied to a H+O-2 system (J=0), and the results indicate the approach is accurate and stable. (C) 2002 American Institute of Physics. |
Identificador | |
Idioma(s) |
eng |
Publicador |
American Institute of Physics |
Palavras-Chave | #Physics, Atomic, Molecular & Chemical #Quantum-mechanical Calculation #Lippmann-schwinger Equations #Angular-momentum J-greater-than-0 #Minres Filter Diagonalization #Dynamics Calculations #Boundary-conditions #Combustion Reaction #Resonance Energies #Ho2 #Schrodinger #C1 #250603 Reaction Kinetics and Dynamics #780102 Physical sciences |
Tipo |
Journal Article |