English

Model-independent form-factor constraints for electromagnetic spin-1 currents

Nuclear Theory 2019-08-23 v2 High Energy Physics - Phenomenology

Abstract

Using local gauge invariance in the form of the Ward-Takahashi identity and the fact that properly constructed current operators must be free of kinematic singularities, it is shown that the magnetic moment μ\mu and the quadrupole moment QQ of an elementary spin-1 particle with mass mm and charge ee are related by 2mμ+m2Q=e2 m\mu + m^2 Q = e, thus constraining the normalizations of the Sachs form factors. This relation holds true as a matter of course at the tree level in the standard model, but we prove it remains true in general for dressed spin-1 states derived from elementary fields. General expressions for spin-1 propagators and currents with arbitrary hadronic dressing are given showing the result to be independent of any dressing effect or model approach.

Keywords

Cite

@article{arxiv.1905.06299,
  title  = {Model-independent form-factor constraints for electromagnetic spin-1 currents},
  author = {Helmut Haberzettl},
  journal= {arXiv preprint arXiv:1905.06299},
  year   = {2019}
}

Comments

Slightly revised version, as published in PRD. This version corrects an erroneous statement in the first version based on a numerical error

R2 v1 2026-06-23T09:07:41.526Z