Translational Chern--Simons Action and New Planar Particle Dynamics
Abstract
We consider a nonstandard gravity described by a translational Chern--Simons action, and couple it to the nonrelativistic point particles. We fix the asymptotic coordinate transformations in such a way that the space part of the metric becomes asymptotically Euclidean. The residual symmetries are (local in time) translations and rigid rotations. The phase space Hamiltonian describing two-body interactions satisfies a nonlinear equation what implies, after quantization, a nonstandard form of the Schr\"{o}dinger equation with energy-dependent fractional angular momentum eigenvalues. Quantum solutions of the two-body problem are discussed. The bound states with discrete energy levels correspond to a confined classical motion (for the planar distance between two particles ) and the scattering states with continuous energy correspond to classical motion for .
Cite
@article{arxiv.hep-th/0005112,
title = {Translational Chern--Simons Action and New Planar Particle Dynamics},
author = {J. Lukierski and P. C. Stichel and W. J. Zakrzewski},
journal= {arXiv preprint arXiv:hep-th/0005112},
year = {2009}
}
Comments
LateX, 13 pages