English

Compositeness, Bargmann-Wigner solutions within a U(1)-interaction quantum-field-theory expansion, and charge

High Energy Physics - Phenomenology 2021-01-06 v1 High Energy Physics - Theory

Abstract

New solutions of the Bargmann-Wigner equations are obtained: free fermion-antifermion pairs, each satisfying Dirac's equation, with parallel momenta and momenta on a plane, produce vectors satisfying Proca's equations. These equations are consistent with Dirac's and Maxwell's equations, as zero-order conditions within a Lagrangian expansion for the U(1)-symmetry quantum field theory. Such vector solutions' demand that they satisfy Maxwell's equations and quantization fix the charge. The current equates the vector field, reproducing the superconductivity London equations, thus, binding and screening conditions. The derived vertex connects to QCD superconductivity and constrains four-fermion interaction composite models.

Keywords

Cite

@article{arxiv.2101.01347,
  title  = {Compositeness, Bargmann-Wigner solutions within a U(1)-interaction quantum-field-theory expansion, and charge},
  author = {J. Besprosvany},
  journal= {arXiv preprint arXiv:2101.01347},
  year   = {2021}
}

Comments

25 pages, 1 figure, 57 references