Quantum dot with spin-orbit interaction in noncommutative phase space and analog Landau levels
arXiv:0906.5482 · doi:10.1016/j.physleta.2010.08.063
Abstract
We have studied a quantum dot with Rashba spin orbit interaction on a plane where the position and momentum coordinates are considered to be noncommutative. The energy spectrum of the system is found to be equivalent to that of a quantum dot with Rashba spin-orbit interaction in a magnetic field under certain conditions.
12 pages
References in corpus (14)
- Formulation, Interpretation and Application of non-Commutative Quantum Mechanics
- Landau Quantization of Neutral Particles in an External Field
- Dual families of non-commutative quantum systems
- The Aharonov-Bohm Effect in Noncommutative Quantum Mechanics
- Bound states in a 2D short range potential induced by spin-orbit interaction
- Nonrelativistic anyons in external electromagnetic field
- Magnetic fields in noncommutative quantum mechanics
- Noncommutative oscillator, symmetry and Landau problem
- Landau level mixing by full spin-orbit interactions
- The noncommutative degenerate electron gas
- Noncommutative Geometry and Geometric Phases
- On atomic analogue of Landau quantization
- Spin Hall Effect For Anyons
- Quantum aspects of a noncommutative supersymmetric kink