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Scattered wave packet formalism for the energy-resolved reaction probability
Journal article   Peer reviewed

Scattered wave packet formalism for the energy-resolved reaction probability

Chia-Chun Chou and Robert E. Wyatt
Chemical Physics, Vol.393(1), pp.32-36
17/01/2012

Abstract

Open boundary conditions Quantum resonance Quantum scattering Reaction probability Scattered wave packet formalism
The scattered wave packet formalism developed for a quantum subsystem interacting with reservoirs through open boundaries is utilized to calculate the energy-resolved transmission probability. The total wave function is split into incident and scattered components. Markovian outgoing wave boundary conditions are imposed on the scattered or total wave function by the polynomial method. The wave packet correlation function approach is employed to compute the energy-resolved transmission probability for a one-dimensional potential barrier and a one-dimensional model chemical reaction exhibiting a quantum resonance. Accurate results demonstrate that this formalism can significantly reduce the number of grid points required in a dynamical calculation for the reaction probability. © 2011 Elsevier B.V. All rights reserved.

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