Volume 2, Issue 3
Two-Body Coulomb Problems with Sources for the J-Matrix Method

L. U. Ancarani & G. Gasaneo

J. At. Mol. Sci., 2 (2011), pp. 203-211.

Published online: 2011-02

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  • Abstract

The two-body Coulomb problem with sources is studied. Closed form solutions are provided for particular non-homogeneities used within the J-matrix method. The results are employed to build analytical solutions having incoming, outgoing and standing wave asymptotic conditions.

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COPYRIGHT: © Global Science Press

  • Email address

ancarani@univ-metz.fr (L. U. Ancarani)

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@Article{JAMS-2-203, author = {Ancarani , L. U. and Gasaneo , G.}, title = {Two-Body Coulomb Problems with Sources for the J-Matrix Method}, journal = {Journal of Atomic and Molecular Sciences}, year = {2011}, volume = {2}, number = {3}, pages = {203--211}, abstract = {

The two-body Coulomb problem with sources is studied. Closed form solutions are provided for particular non-homogeneities used within the J-matrix method. The results are employed to build analytical solutions having incoming, outgoing and standing wave asymptotic conditions.

}, issn = {2079-7346}, doi = {https://doi.org/10.4208/jams.121110.122610a}, url = {http://global-sci.org/intro/article_detail/jams/8147.html} }
TY - JOUR T1 - Two-Body Coulomb Problems with Sources for the J-Matrix Method AU - Ancarani , L. U. AU - Gasaneo , G. JO - Journal of Atomic and Molecular Sciences VL - 3 SP - 203 EP - 211 PY - 2011 DA - 2011/02 SN - 2 DO - http://doi.org/10.4208/jams.121110.122610a UR - https://global-sci.org/intro/article_detail/jams/8147.html KW - coulomb problem, sources, J-matrix, non-homogeneous, hypergeometric AB -

The two-body Coulomb problem with sources is studied. Closed form solutions are provided for particular non-homogeneities used within the J-matrix method. The results are employed to build analytical solutions having incoming, outgoing and standing wave asymptotic conditions.

Ancarani , L. U. and Gasaneo , G.. (2011). Two-Body Coulomb Problems with Sources for the J-Matrix Method. Journal of Atomic and Molecular Sciences. 2 (3). 203-211. doi:10.4208/jams.121110.122610a
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