arXiv · 1506.03689
Relativistic quantum dynamics of neutral particle in external electric fields: An approach on effects of spin
Abstract
The planar quantum dynamics of spin-1/2 neutral particle interacting with electrical fields is considered. A set of first order differential equations are obtained directly from the planar Dirac equation with nonminimum coupling. New solutions of this system, in particular, for the Aharonov-Casher effect, are found and discussed in detail. Pauli equation is also obtained by studying the motion of the particle when it describes a circular path of constant radius. We also analyze the planar dynamics in the full space, including the $r=0$ region. The self-adjoint extension method is used to obtain the energy levels and wave functions of the particle for two particular values for the self-adjoint extension parameter. The energy levels obtained are analogous to the Landau levels and explicitly depend on the spin projection parameter.
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F. S. Azevedo, Edilberto O. Silva, Luis B. Castro, Cleverson Filgueiras, D. Cogollo. 2015-06-11. Relativistic quantum dynamics of neutral particle in external electric fields: An approach on effects of spin. https://doi.org/10.1016/j.aop.2015.08.007
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