The Dirac oscillator in a spinning cosmic string spacetime
arXiv:1904.05889 · doi:10.1140/epjc/s10052-019-6830-4
Abstract
We examine the effects of gravitational fields produced by topological defects on a Dirac field and a Dirac oscillator in a spinning cosmic string spacetime. We obtain the eigenfunctions and the energy levels of the relativistic field in that background and consider the effect of various parameters, such as the frequency of the rotating frame, the oscillator's frequency, the string density and other quantum numbers.
12 pages, 3 figures
References in corpus (13)
- Exact Mapping of the 2+1 Dirac Oscillator onto the Jaynes-Cummings Model: Ion-Trap Experimental Proposal
- Chirality Quantum Phase Transition in the Dirac oscillator
- Noninertial effects on the Dirac oscillator in a topological defect spacetime
- Aharonov-Bohm effect for bound states in relativistic scalar particle systems in a spacetime with a space-like dislocation
- Thermodynamic properties of neutral particle in presence of Topological defects in Magnetic Cosmic String Background
- Energy Spectrum of a 2D Dirac Oscillator in the Presence of the Aharonov-Bohm Effect
- Landau Quantization in the Spinning Cosmic String Spacetime
- Effects of spin on the dynamics of the 2D Dirac oscillator in the magnetic cosmic string background
- A relativistic quantum oscillator subject to a Coulomb-type potential induced by effects of the violation of the Lorentz symmetry
- Equilibration problem for the generalized Langevin equation
- On the Dirac Oscillator
- Pseudo Hermitian Generalized Dirac Oscillators
- Dirac oscillators and the relativistic R matrix
Cited by in corpus (3)
- Topological and rotating effects on the Dirac field in the spiral dislocation spacetime
- Aharonov-Bohm-type effect in the background of a distortion of a vertical line into a vertical spiral
- Particle Production via Dirac Dipole Moments in the Magnetized and Non-magnetized Exponentially Expanding Universe