English

Polarizability of the Nucleon and Compton Scattering

High Energy Physics - Phenomenology 2013-06-26 v3

Abstract

Different approaches to describe Compton scattering and the polarizability of the nucleon have been discussed up to now. We show that the most appropriate ones are provided by non-subtracted dispersion theories of the fixed-tt and fixed-θ\theta types, where the properties of these two versions are complementary so that advantage can be taken from both of them. In the frame of fixed-tt dispersion theory it was possible to precisely reproduce experimental differential cross sections obtained for the proton in a wide angular range and for energies up to 1 GeV. At energies of the first resonance region and below, precise values for the electromagnetic polarizabilities and spin-polarizabilities have been determined for the proton and the neutron. The data show that diamagnetism is a prominent property of nucleon structure, where the underlying mechanism is a tt-channel σ\sigma-meson exchange. A similar mechanism is responsible for the backward spin-polarizability where the relevant meson is the π0\pi^0. It is a challenge for further research to integrate the σ\sigma and π0\pi^0 intermediate states into a consistent description of the structure of the nucleon.

Cite

@article{arxiv.hep-ph/0501167,
  title  = {Polarizability of the Nucleon and Compton Scattering},
  author = {Martin Schumacher},
  journal= {arXiv preprint arXiv:hep-ph/0501167},
  year   = {2013}
}