Missing solution in a Cornell potential
arXiv:1309.7904 · doi:10.1016/j.aop.2013.09.008
Abstract
Missing bound-state solutions for fermions in the background of a Cornell potential consisting of a mixed scalar-vector-pseudoscalar coupling is examined. Charge-conjugation operation, degeneracy and localization are discussed.
References in corpus (3)
- Relating pseudospin and spin symmetries through charge conjugation and chiral transformations: the case of the relativistic harmonic oscillator
- Relativistic Effects of Mixed Vector-Scalar-Pseudoscalar Potentials for Fermions in 1+1 Dimensions
- Relativistic confinement of neutral fermions with a trigonometric tangent potential
Cited by in corpus (6)
- Remarks on the Dirac oscillator in dimensions
- Relativistic quantum dynamics of neutral particle in external electric fields: An approach on effects of spin
- Quantum dynamics of a spin-1/2 charged particle in the presence of magnetic field with scalar and vector couplings
- Scattering and bound states of fermions in a mixed vector-scalar smooth step potential
- Fermions in the background of mixed vector-scalar-pseudoscalar square potentials
- Unsuitable use of spin and pseudospin symmetries with a pseudoscalar Cornell potential