English

Electron-Electron Bound States in Maxwell-Chern-Simons-Proca QED3

High Energy Physics - Theory 2012-08-27 v2

Abstract

We start from a parity-breaking MCS QED3_{3} model with spontaneous breaking of the gauge symmetry as a framework for evaluation of the electron-electron interaction potential and for attainment of numerical values for the e-e bound state. Three expressions are obtained for the potential according to the polarization state of the scattered electrons. In an energy scale compatible with Condensed Matter electronic excitations, these three potentials become degenerated. The resulting potential is implemented in the Schrodinger equation and the variational method is applied to carry out the electronic binding energy. The resulting binding energies in the scale of 10-100 meV and a correlation length in the scale of 10-30 Angs. are possible indications that the MCS-QED3_{3} model adopted may be suitable to address an eventual case of e-e pairing in the presence of parity-symmetry breakdown. The data analyzed here suggest an energy scale of 10-100 meV to fix the breaking of the U(1)-symmetry. PACS numbers: 11.10.Kk 11.15.Ex 74.20.-z 74.72.-h ICEN-PS-01/17

Keywords

Cite

@article{arxiv.hep-th/0212285,
  title  = {Electron-Electron Bound States in Maxwell-Chern-Simons-Proca QED3},
  author = {H. Belich, and O. M. Del Cima and M. M. Ferreira, and J. A. Helayel-Neto},
  journal= {arXiv preprint arXiv:hep-th/0212285},
  year   = {2012}
}

Comments

13 pages, style revtex, revised version

R2 v1 2026-07-22T15:14:57.206Z