English

Electromagnetic and Scalar Pion form factor in the Kroll-Lee-Zumino model

High Energy Physics - Phenomenology 2010-11-11 v1

Abstract

The renormalizable Abelian quantum field theory model of Kroll, Lee, and Zumino is used at the one loop level to compute vertex corrections to the tree-level, Vector Meson Dominance (VMD) electromagnetic pion form factor. These corrections, together with the one-loop vacuum polarization contribution, imply a resulting electromagnetic pion form factor in excellent agreement with data in the whole range of accessible momentum transfers in the space-like region. The time-like form factor, which reproduces the Gounaris-Sakurai formula at and near the rho-meson peak, is unaffected by the vertex correction at order O\cal{O}(g2)(g^2). The KLZ model is also used to compute the scalar radius of the pion at the one loop level, finding <rπ2>S=0.40fm2<r^{2}_{\pi}>_{S} = 0.40 fm^{2}. This value implies for the low energy constant of chiral perturbation theory lˉ4=3.4\bar{l}_{4} =3.4.

Keywords

Cite

@article{arxiv.0904.4215,
  title  = {Electromagnetic and Scalar Pion form factor in the Kroll-Lee-Zumino model},
  author = {C. A. Dominguez and J. I. Jottar and M. Loewe and B. Willers},
  journal= {arXiv preprint arXiv:0904.4215},
  year   = {2010}
}

Comments

four pages, two figures