PaperPanorama

arXiv:hep-lat/9701005·v1·High Energy Physics — Lattice

Gauge-ball spectrum of the four-dimensional pure U(1) gauge theory

J. Cox (Aachen)🇩🇪 · W. Franzki (Aachen)🇩🇪 · J. Jersak (Aachen)🇩🇪 · C.B. Lang (Graz)🇦🇹 · T. Neuhaus (Copenhagen)🇩🇰 · P.W. Stephenson (Zeuthen)🇩🇪

PDFarXivINSPIREDOI

Abstract

We investigate the continuum limit of the gauge-ball spectrum in the four-dimensional pure U(1) lattice gauge theory. In the confinement phase we identify various states scaling with the correlation length exponent . The square root of the string tension also scales with this exponent, which agrees with the non-Gaussian fixed point exponent recently found in the finite size studies of this theory. Possible scenarios for constructing a non-Gaussian continuum theory with the observed gauge-ball spectrum are discussed. The state, however, scales with a Gaussian value . This suggests the existence of a second, Gaussian continuum limit in the confinement phase and also the presence of a light or possibly massless scalar in the non-Gaussian continuum theory. In the Coulomb phase we find evidence for a few gauge-balls, being resonances in multi-photon channels; they seem to approach the continuum limit with as yet unknown critical exponents. The maximal value of the renormalized coupling in this phase is determined and its universality confirmed.

Comments: 46 pages, 12 figures

Citation historyopen in Citation History ↗