Effects of rotation and Coulomb type potential on the spin-1/2 Aharonov-Bohm problem
arXiv:2112.13452 · doi:10.1140/epjp/s13360-023-03730-x
Abstract
In this work, we investigate how both rotation and a Coulomb potential affect the quantum mechanical description of a spin- particle in the presence of the Aharonov-Bohm effect. We employ the method of the self-adjoint extensions in the framework of the Pauli-Schrödinger equation. We discuss the role of the spin degree of freedom on this problem, find the energy spectrum, and investigate the results in detail.
11 pages, 7 figures
References in corpus (16)
- Aharonov-Bohm-Casher Problem with a nonminimal Lorentz-violating coupling
- Aharonov-Bohm effect for bound states in relativistic scalar particle systems in a spacetime with a space-like dislocation
- Effects of spin on the dynamics of the 2D Dirac oscillator in the magnetic cosmic string background
- Interplay of the Aharonov-Bohm effect and Klein tunneling in graphene
- Effects of quantum deformation on the spin-1/2 Aharonov-Bohm problem
- On the Dirac oscillator in a spinning cosmic string spacetime in external magnetic fields: Investigation of energy spectrum and connection with the condensed matter physics
- The generalized Klein-Gordon oscillator in a Cosmic Space-Time with a Space-Like Dislocation and the Aharonov-Bohm Effect
- Scattering of spin-polarized electron in an Aharonov--Bohm potential
- Quantum decoherence by Coulomb interaction
- Aharonov-Bohm effect for excitons in a semiconductor quantum ring dressed by circularly polarized light
- Comment on "Relativistic Aharonov-Bohm effect in the presence of planar Coulomb potentials"
- Gravitomagnetic Stern--Gerlach Force
- Aharonov-Bohm effect on the generalized Duffin-Kemmer-Petiau oscillator in the Som-Raychaudhuri space-time
- Quantum dynamics of a spin-1/2 charged particle in the presence of magnetic field with scalar and vector couplings
- Optically- and thermally-driven huge lattice orbital and spin angular momenta from spinning fullerenes
- Rotational diode: Clockwise/counterclockwise asymmetry in conducting and mechanical properties of rotating (semi)conductors