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Please use this identifier to cite or link to this item: http://hdl.handle.net/2241/103919

Title: Time-dependent approach to three-body rearrangement collisions: Application to the capture of heavy negatively charged particles by hydrogen atoms
Authors: Tong, X. M.
Shirahama, T.
Hino, K.
Toshima, N.
仝, 暁民
日野, 健一
戸嶋, 信幸
Issue Date: May-2007
Publisher: The American Physical Society
Journal Title: Physical review A
Volume: 75
Issue: 5
Start Page: 052711
DOI: 10.1103/PhysRevA.75.052711
Abstract: We present a theoretical method for Coulomb three-body rearrangement collisions solving a Chew-Goldberger-type integral equation directly. The scattering boundary condition is automatically satisfied by adiabatically switching on the interaction between the projectile and hydrogen atom. Hence the outgoing wave function is obtained without the tedious procedure of adjusting the total wave function in the asymptotic region. All the dynamical information can be derived from the outgoing wave function obtained on pseudospectral grids numerically. Taking µ−+H(1s) and [overline p]+H(1s) collisions as examples, we demonstrate the usefulness and powerfulness of the method and present the state-specified capture cross sections of heavy negatively charged particles by hydrogen atoms. The convergence and accuracy of the numerical procedure are examined with sufficient care.
URI: http://hdl.handle.net/2241/103919
Rights: ©2007 The American Physical Society
Text Version: publisher
Appears in Collections:Physical review A
戸嶋 信幸 (Toshima Nobuyuki)
日野 健一 (Hino Ken-ichi)
仝 暁民 (Tong Xiao-Min)

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