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Relativistic symmetries with the trigonometric Poschl-Teller potential plus Coulomb-like tensor interaction Babatunde J. Falaye, Sameer M. Ikhdair

Yazar: Materyal türü: MakaleMakaleDil: İngilizce Yayın ayrıntıları:Iop Publıshıng Ltd 2013.ISSN:
  • 1674-1056
Konu(lar): LOC sınıflandırması:
  • QC23
Çevrimiçi kaynaklar: İçindekiler: Chınese Physıcs B Jun 2013, Volume: 22, Issue: 6 Özet: The Dirac equation is solved to obtain its approximate bound states for a spin-1/2 particle in the presence of trigonometric Poschl-Teller (tPT) potential including a Coulomb-like tensor interaction with arbitrary spin-orbit quantum number kappa using an approximation scheme to substitute the centrifugal terms kappa(kappa +/- 1)r(-2). In view of spin and pseudo- spin (p-spin) symmetries, the relativistic energy eigenvalues and the corresponding two-component wave functions of a particle moving in the field of attractive and repulsive tPT potentials are obtained using the asymptotic iteration method (AIM). We present numerical results in the absence and presence of tensor coupling A and for various values of spin and p-spin constants and quantum numbers n and kappa. The non-relativistic limit is also obtained.
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Online Electronic Document NEU Grand Library Online electronic QC23 .R45 2013 (Rafa gözat(Aşağıda açılır)) Ödünç verilmez EOL-897

The Dirac equation is solved to obtain its approximate bound states for a spin-1/2 particle in the presence of trigonometric Poschl-Teller (tPT) potential including a Coulomb-like tensor interaction with arbitrary spin-orbit quantum number kappa using an approximation scheme to substitute the centrifugal terms kappa(kappa +/- 1)r(-2). In view of spin and pseudo- spin (p-spin) symmetries, the relativistic energy eigenvalues and the corresponding two-component wave functions of a particle moving in the field of attractive and repulsive tPT potentials are obtained using the asymptotic iteration method (AIM). We present numerical results in the absence and presence of tensor coupling A and for various values of spin and p-spin constants and quantum numbers n and kappa. The non-relativistic limit is also obtained.

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