Calculation of the matrix elements of the Coulomb interaction involving relativistic hydrogenic wave functions ☆☆

Main Author: CPC, Mendeley
Other Authors: Lugosi, L., Sarkadi, L.
Format: Dataset
Terbitan: Mendeley , 2001
Subjects:
Online Access: https:/data.mendeley.com/datasets/fpc35nv7g9
ctrlnum 0.17632-fpc35nv7g9.1
fullrecord <?xml version="1.0"?> <dc><creator>CPC, Mendeley</creator><title>Calculation of the matrix elements of the Coulomb interaction involving relativistic hydrogenic wave functions &#x2606;&#x2606; </title><publisher>Mendeley</publisher><description>Abstract A program is presented for calculation of the matrix elements of the Coulomb interaction between a charged particle and an atomic electron, &#x222B;&#x3C8;_f ^&#x2020; (r)|R-r|^(-1)&#x3C8; _i (r)dr. Bound-free transitions are considered. Relativistic hydrogenic wave functions are used for the numerical evaluation of the matrix elements. The applied algorithm is based on the multipole series expansion of the Coulomb potential. The radial part of the terms of this series expansion (known as G functions) can also be ob... Title of program: MTRDCOUL Catalogue Id: ADOX_v1_0 Nature of problem The theoretical description of the excitation and ionization of atoms by charged particle impact often requires the knowledge of the matrix elements of the Coulomb interaction. The program MTRDCOUL calculates the matrix elements between bound and free states represented by relativistic hydrogenic wave functions. Versions of this program held in the CPC repository in Mendeley Data ADOX_v1_0; MTRDCOUL; 10.1016/S0010-4655(01)00294-6 This program has been imported from the CPC Program Library held at Queen's University Belfast (1969-2019)</description><subject>Atomic Physics</subject><subject>Computational Physics</subject><contributor>Lugosi, L.</contributor><contributor>Sarkadi, L.</contributor><type>Other:Dataset</type><identifier>10.17632/fpc35nv7g9.1</identifier><rights>Computer Physics Communications Journal Licence</rights><rights>https://www.elsevier.com/about/policies/open-access-licenses/elsevier-user-license/cpc-license/</rights><relation>https:/data.mendeley.com/datasets/fpc35nv7g9</relation><date>2001-11-15T12:00:00Z</date><recordID>0.17632-fpc35nv7g9.1</recordID></dc>
format Other:Dataset
Other
author CPC, Mendeley
author2 Lugosi, L.
Sarkadi, L.
title Calculation of the matrix elements of the Coulomb interaction involving relativistic hydrogenic wave functions ☆☆
publisher Mendeley
publishDate 2001
topic Atomic Physics
Computational Physics
url https:/data.mendeley.com/datasets/fpc35nv7g9
contents Abstract A program is presented for calculation of the matrix elements of the Coulomb interaction between a charged particle and an atomic electron, ∫ψ_f ^† (r)|R-r|^(-1)ψ _i (r)dr. Bound-free transitions are considered. Relativistic hydrogenic wave functions are used for the numerical evaluation of the matrix elements. The applied algorithm is based on the multipole series expansion of the Coulomb potential. The radial part of the terms of this series expansion (known as G functions) can also be ob... Title of program: MTRDCOUL Catalogue Id: ADOX_v1_0 Nature of problem The theoretical description of the excitation and ionization of atoms by charged particle impact often requires the knowledge of the matrix elements of the Coulomb interaction. The program MTRDCOUL calculates the matrix elements between bound and free states represented by relativistic hydrogenic wave functions. Versions of this program held in the CPC repository in Mendeley Data ADOX_v1_0; MTRDCOUL; 10.1016/S0010-4655(01)00294-6 This program has been imported from the CPC Program Library held at Queen's University Belfast (1969-2019)
id IOS7969.0.17632-fpc35nv7g9.1
institution Universitas Islam Indragiri
affiliation onesearch.perpusnas.go.id
institution_id 804
institution_type library:university
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library Teknologi Pangan UNISI
library_id 2816
collection Artikel mulono
repository_id 7969
city INDRAGIRI HILIR
province RIAU
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repoId IOS7969
first_indexed 2020-04-08T08:28:11Z
last_indexed 2020-04-08T08:28:11Z
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