English

Proton scalar dipole polarizabilities from real Compton scattering data, using fixed-t subtracted dispersion relations and the bootstrap method

High Energy Physics - Phenomenology 2019-07-17 v2 Nuclear Experiment Nuclear Theory

Abstract

We perform a fit of the real Compton scattering (RCS) data below pion-production threshold to extract the electric (αE1\alpha_{E1}) and magnetic (βM1\beta_{M1}) static scalar dipole polarizabilities of the proton, using fixed-tt subtracted dispersion relations and a bootstrap-based fitting technique. The bootstrap method provides a convenient tool to include the effects of the systematic errors on the best values of αE1\alpha_{E1} and βM1\beta_{M1} and to propagate the statistical errors of the model parameters fixed by other measurements. We also implement various statistical tests to investigate the consistency of the available RCS data sets below pion-production threshold and we conclude that there are not strong motivations to exclude any data point from the global set. Our analysis yields αE1=(12.030.54+0.48)×104fm3\alpha_{E1} = (12.03^{+0.48}_{-0.54})\times 10^{-4} \text{fm}^3 and βM1=(1.770.54+0.52)×104fm3\beta_{M1} = (1.77^{+0.52}_{-0.54})\times 10^{-4} \text{fm}^3, with p-value =12%= 12\%.

Keywords

Cite

@article{arxiv.1903.07952,
  title  = {Proton scalar dipole polarizabilities from real Compton scattering data, using fixed-t subtracted dispersion relations and the bootstrap method},
  author = {B. Pasquini and P. Pedroni and S. Sconfietti},
  journal= {arXiv preprint arXiv:1903.07952},
  year   = {2019}
}

Comments

19 pages, 11 figures, 4 tables; final version accepted for publication in J. Phys. G

R2 v1 2026-06-23T08:12:42.309Z