Quadratic algebra structure in the 5D Kepler system with non-central potentials and Yang-Coulomb monopole interaction
arXiv:1609.05631
Abstract
We construct the integrals of motion for the 5D deformed Kepler system with non-central potentials in Yang-Coulomb monopole field. We show that these integrals form a higher rank quadratic algebra , with structure constants involving the Casimir operators of and Lie algebras. We realize the quadratic algebra in terms of the deformed oscillator and construct its finite-dimensional unitary representations. This enable us to derive the energy spectrum of the system algebraically. Furthermore we show that the model is multiseparable and allows separation of variables in the hyperspherical and parabolic coordinates. We also show the separability of its 8D dual system (i.e. the 8D singular harmonic oscillator) in the Euler and cylindrical coordinates.
24 pages
References in corpus (3)
- Algebraic Calculation of the Energy Eigenvalues for the Nondegenerate Three-Dimensional Kepler-Coulomb Potential
- On realizations of polynomial algebras with three generators via deformed oscillator algebras
- The su(1,1) Dynamical Algebra for the Generalized MICZ-Kepler Problem from the Schrödinger Factorization