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Solutions of the spatially-dependent mass Dirac equation with the spin and pseudospin symmetry for the Coulomb-like potential (Ikhdair, Sameer M.,)
Bibliographical information (record 266074)
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Solutions of the spatially-dependent mass Dirac equation with the spin and pseudospin symmetry for the Coulomb-like potential
Author:
Ikhdair, Sameer M., Search Author in Amazon Books

Publisher:
Elsevier,
Edition:
2010.
Classification:
QA36
URL:

http://library.neu.edu.tr:2048/login?url=http://dx.doi.org/10.1016/j.amc.2010.01.072
Detailed notes
    - We study the effect of spatially-dependent mass function over the solution of the Dirac equation with the Coulomb potential in the (3 + 1)-dimensions for any arbitrary spin-orbit kappa state. In the framework of the spin and pseudospin symmetry concept, the analytic bound state energy eigenvalues and the corresponding upper and lower two-component spinors of the two Dirac particles are obtained by means of the Nikiforov-Uvarov method, in closed form. This physical choice of the mass function leads to an exact analytical solution for the pseudospin part of the Dirac equation. The special cases kappa = +/- 1(l = (l) over bar = 0; i.e., s-wave), the constant mass and the non-relativistic limits are briefly investigated. (C) 2010 Elsevier Inc. All rights reserved.
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Status
Library
Section
EOL-1315
Item available
NEU Grand LibraryOnline (QA36 .S65 2010)
Online electronic

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