Quantum mechanics of many particles defined on twisted N-enlarged Newton-Hooke space-times
arXiv:1304.6801 · doi:10.5506/APhysPolB.44.699
Abstract
We provide the quantum mechanics of many particles moving in twisted N-enlarged Newton-Hooke space-time. In particular, we consider the example of such noncommutative system - the set of M particles moving in Coulomb field of external point-like source and interacting each other also by Coulomb potential.
13 pages, Latex source. arXiv admin note: text overlap with arXiv:1104.3243
Cited by in corpus (13)
- Composite system in noncommutative space and the equivalence principle
- Composite system in rotationally invariant noncommutative phase space
- Frenkel electron and a spinning body in a curved background
- Parameters of noncommutativity in Lie-algebraic noncommutative space
- Effect of noncommutativity on the spectrum of free particle and harmonic oscillator in rotationally invariant noncommutative phase space
- Upper bound on the momentum scale in noncommutative phase space of canonical type
- Kinematic variables in noncommutative phase space and parameters of noncommutativity
- Rotationally invariant noncommutative phase space of canonical type with recovered weak equivalence principle
- Noncommutative phase space with rotational symmetry and hydrogen atom
- Two-particle system in noncommutative space with preserved rotational symmetry
- Features of free particles system motion in noncommutative phase space
- Influence of noncommutativity on the motion of Sun-Earth-Moon system and the weak equivalence principle
- Features of description of composite system's motion in twist-deformed space-time