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Institute of Theoretical Physics · Faculty of Mathematics and Physics, Charles University

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Article

Schwinger-Lanczos algorithm for calculation of off-shell T -matrix elements and Wynn's epsilon algorithm

Čížek, M.; Horáček, J.; Meyer, H.-D.

Comput. Phys. Commun. 131(0), 41-51 (2000)

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Abstract

A generalization of the Schwinger-Lanczos algorithm for the calculation of the off-shell T-matrix elements is presented and shown to be equivalent to the Wynn's epsilon algorithm for acceleration of the Born series. Both methods are applied to the calculation of cross section for the dissociative attachment of electrons to hydrogen molecule, e-+H2H+H-. Although formally fully equivalent both methods behave very differently numerically. It is shown that the Schwinger-Lanczos algorithm is more stable and generally superior to all other methods discussed in this paper.

Keywords

Schwinger-Lanczos method, Electron-molecule scattering, Dissociative attachment, Acceleration of convergence, Continuous fraction, Nonlocal potential

BibTeX

@article{UTF129,
  author        = {Čížek, M. and Horáček, J. and Meyer, H.-D.},
  title         = {{Schwinger-Lanczos algorithm for calculation of off-shell T -matrix elements and Wynn's epsilon algorithm}},
  journal       = {Comput. Phys. Commun.},
  volume        = {131},
  number        = {0},
  pages         = {41-51},
  year          = {2000},
  doi           = {10.1016/S0010-4655(00)00076-X},
  url           = {http://dx.doi.org/10.1016/S0010-4655(00)00076-X},
}