Anyon in External Electromagnetic Field: Hamiltonian and Lagrangian Formulations
Abstract
We propose a simple model for a free relativistic particle of fractional spin in 2+1 dimensions which satisfies all the necessary conditions. The canonical quantization of the system leads to the description of one- particle states of the Poincare group with arbitrary spin. Using the Hamil- tonian formulation with the set of constraints, we introduce the electro- magnetic interaction of a charged anyon and obtain the Lagrangian. The Casimir operator of the extended algebra, which is the first-class constraint, is obtained and gives the equation of motion of the anyon. In particular, from the latter it follows that the gyromagnetic ratio for a charged anyon is two due to the parallelness of spin and momentum of the particle in 2+1 dimensions. The canonical quantization is also considered in this case.
Keywords
Cite
@article{arxiv.hep-th/9309151,
title = {Anyon in External Electromagnetic Field: Hamiltonian and Lagrangian Formulations},
author = {M. Chaichian and R. Gonzalez Felipe and D. Louis Martinez},
journal= {arXiv preprint arXiv:hep-th/9309151},
year = {2009}
}
Comments
9 pages, Latex, HU-SEFT R 1993-11