Quantum states of a neutral massive fermion with an anomalous magnetic moment in an external electric field
arXiv:1704.01779 · doi:10.1142/S0217751X17501111
Abstract
The planar non-relativistic quantum dynamics of a neutral massive fermion with an anomalous magnetic moment (AMM) in the presence of the electric field of infinitely long and thin thread with a charge density distributed uniformly along it (an Aharonov--Casher field) is examined. The relevant Hamiltonian is singular and requires additional specification of a one-parameter self-adjoint extension, which can be given in terms of physically acceptable (self-adjoint) boundary conditions. We find all possible self-adjoint Hamiltonians with an Aharonov--Casher field (ACF) by constructing the corresponding Hilbert space of square-integrable functions, including the region, for all their Hamiltoniahs. We determine the most relevant physical quantities, such as energy spectrum and wave functions and discuss their correspondence with those obtained by the physical regularization procedure. We show that energy levels of bound states are simple poles of the scattering amplitude. Expressions for the scattering amplitude and cross section depending on the fermion spin are reexamined.
10 pages
References in corpus (9)
- Effects of quantum deformation on the spin-1/2 Aharonov-Bohm problem
- Nonrelativistic quantum dynamics on a cone with and without a constraining potential
- Bound states of massive fermions in the Aharonov--Bohm-like fields
- Remarks on the Aharonov-Casher dynamics in a CPT-odd Lorentz-violating background
- On Aharonov-Casher bound states
- Scattering of spin-polarized electron in an Aharonov--Bohm potential
- Creation of planar charged fermions in Coulomb and Aharonov-Bohm potentials
- On planar quantum dynamics of a magnetic dipole moment in the presence of electric and magnetic fields
- Effect of vacuum polarization of charged massive fermions in an Aharonov--Bohm field