Chebyshev real wave packet propagation: H+O-2 (J=0) state-to-state reactive scattering calculations


Autoria(s): Zhang, H.; Smith, S. C.
Data(s)

01/01/2002

Resumo

In this paper we explore the relative performance of two recently developed wave packet methodologies for reactive scattering, namely the real wave packet Chebyshev domain propagation of Gray and Balint-Kurti [J. Chem. Phys. 108, 950 (1998)] and the Lanczos subspace wave packet approach of Smith [J. Chem. Phys. 116, 2354 (2002); Chem. Phys. Lett. 336, 149 (2001)]. In the former method, a modified Schrodinger equation is employed to propagate the real part of the wave packet via the well-known Chebyshev iteration. While the time-dependent wave packet from the modified Schrodinger equation is different from that obtained using the standard Schrodinger equation, time-to-energy Fourier transformation yields wave functions which differ only trivially by normalization. In the Lanczos subspace approach the linear system of equations defining the action of the Green operator may be solved via either time-dependent or time-independent methods, both of which are extremely efficient due to the simple tridiagonal structure of the Hamiltonian in the Lanczos representation. The two different wave packet methods are applied to three dimensional reactive scattering of H+O-2 (total J=0). State-to-state reaction probabilities, product state distributions, as well as initial-state-resolved cumulative reaction probabilities are examined. (C) 2002 American Institute of Physics.

Identificador

http://espace.library.uq.edu.au/view/UQ:62308

Idioma(s)

eng

Publicador

American Institute of Physics

Palavras-Chave #Physics, Atomic, Molecular & Chemical #Angular-momentum J-greater-than-0 #Quantum-mechanical Calculations #Lippmann-schwinger Equations #Subspace Filter Diagonalization #Absolute Spectral Densities #Polynomial Expansion #Cross-sections #Combustion Reaction #Resonance Energies #Harmonic Inversion #C1 #250603 Reaction Kinetics and Dynamics #780102 Physical sciences
Tipo

Journal Article