The Schwinger Model and the Physical Projector: a Nonperturbative Quantization without Gauge Fixing
Abstract
Based on the physical projector approach, a nonpertubative quantization of the massless Schwinger model is considered which does not require any gauge fixing. The spectrum of physical states, readily identified following a diagonalization of the operator algebra, is that of a massive pseudoscalar field, namely the electric field having acquired a mass proportional to the gauge coupling constant. The physical spectrum need not be identified with confined bound fermion-antifermion pairs, an interpretation which one is otherwise led to given whatever gauge fixing procedure but which is not void of gauge fixing artefacts.
Cite
@article{arxiv.hep-th/0207277,
title = {The Schwinger Model and the Physical Projector: a Nonperturbative Quantization without Gauge Fixing},
author = {Gabriel Y. H. Avossevou and Jan Govaerts},
journal= {arXiv preprint arXiv:hep-th/0207277},
year = {2017}
}
Comments
To appear in the Proceedings of the Second International Workshop on Contemporary Problems in Mathematical Physics, Cotonou, Republic of Benin, 15 pages