paper

The massive Schwinger model with on the light cone

arXiv:hep-th/9309128 · doi:10.1103/PhysRevD.49.4226

Abstract

The massive Schwinger model with two flavors is studied in the strong coupling region by using light-front Tamm-Dancoff approximation. The mass spectrum of the lightest particles is obtained numerically. We find that the mass of the lightest isotriplet (``pion'') behaves as for the strong couplings, where is the fermion mass. We also find that the lightest isosinglet is not in the valence state (``eta'') which is much heavier in the strong coupling region, but can be interpreted as a bound state of two pions. It is 1.762 times heavier than pion at , while Coleman predicted that the ratio is in the strong coupling limit. The ``pion decay constant'' is calculated to be 0.3945.

35 pages (without figures), KYUSHU-HET-9