Bounds on fifth forces at the sub-Angstrom length scale
Abstract
Constraints on a possible fifth-force interaction between hadrons are derived based on an analysis of results from laser precision frequency measurements of antiprotonic helium atoms, both He and He species, and from experiments on resonant formation rates of -ions in muon-catalyzed fusion processes. A comparison is made between accurate experimental data and first-principles theoretical descriptions of the exotic systems within a quantum electrodynamical framework. The agreement between theory and experiment sets limits on a possible additional hadron-hadron interaction written in the form of a Yukawa potential , with representing the characteristic length scale associated with the mass of a hypothetical force-carrying particle via . The laser spectroscopic data of antiprotonic helium set a constraint of for \AA, while the binding energy of the muonic molecular deuterium ion delivers a constraint of for \AA, where represents the strength of the electromagnetic interaction or the fine structure constant.
Keywords
Cite
@article{arxiv.1308.1711,
title = {Bounds on fifth forces at the sub-Angstrom length scale},
author = {E. J. Salumbides and W. Ubachs and V. I. Korobov},
journal= {arXiv preprint arXiv:1308.1711},
year = {2015}
}