Extraction of the proton radius from electron-proton scattering data
Abstract
We perform a new analysis of electron-proton scattering data to determine the proton electric and magnetic radii, enforcing model-independent constraints from form factor analyticity. A wide-ranging study of possible systematic effects is performed. An improved analysis is developed that rebins data taken at identical kinematic settings, and avoids a scaling assumption of systematic errors with statistical errors. Employing standard models for radiative corrections, our improved analysis of the 2010 Mainz A1 Collaboration data yields a proton electric radius fm and magnetic radius fm. A similar analysis applied to world data (excluding Mainz data) implies fm and fm. The Mainz and world values of the charge radius are consistent, and a simple combination yields a value fm that is larger than the CREMA Collaboration muonic hydrogen determination. The Mainz and world values of the magnetic radius differ by , and a simple average yields fm. The circumstances under which published muonic hydrogen and electron scattering data could be reconciled are discussed, including a possible deficiency in the standard radiative correction model which requires further analysis.
Cite
@article{arxiv.1505.01489,
title = {Extraction of the proton radius from electron-proton scattering data},
author = {Gabriel Lee and John R. Arrington and Richard J. Hill},
journal= {arXiv preprint arXiv:1505.01489},
year = {2015}
}
Comments
26 pages, 10 figures, 4 supplementary data files with explanatory text. v2: As published in PRD including supplementary material. Added comparison to alternate model for correlated systematic errors and more references. Updated fit values with minor changes from v1