Quark confinement and curved spaces
arXiv:hep-ph/0504179 · doi:10.1140/epjc/s2005-02431-6
Abstract
In this work it will be shown how quark confinement appears when wave equations derived in curved spaces are considered. First, the equations and their solutions for Coulomb-like potentials will be presented, and then, how this theory leads to quark confinement. A comparison between different models of confinement will be also made.
References in corpus (1)
Cited by in corpus (5)
- Relativistic quantum motion of spin-0 particles under the influence of non-inertial effects in the cosmic string space-time
- Quantum dynamics of scalar particles in the space-time of a cosmic string in the context of gravity's rainbow
- A possible Reinterpretation of Einstein's Equations
- Exact solutions of (n + 1)-dimensional Yang-Mills equations in curved space-time
- Potentials on the conformally compactified Minkowski spacetime and their application to quark deconfinement