English

Bounds on fifth forces at the sub-Angstrom length scale

High Energy Physics - Phenomenology 2015-06-16 v2 Atomic Physics

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 pˉ4\bar{p}\,^{4}He+^{+} and pˉ3\bar{p}\,^{3}He+^{+} species, and from experiments on resonant formation rates of ddμ+dd\mu^{+}-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 V5(r)=α5exp(r/λ)/rV_5(r)=\alpha_5 \exp(-r/\lambda)/r, with λ\lambda representing the characteristic length scale associated with the mass of a hypothetical force-carrying particle via λ=/(m5c)\lambda=\hbar/(m_5c). The laser spectroscopic data of antiprotonic helium set a constraint of α5/αEM<108\alpha_5/\alpha_{EM} < 10^{-8} for λ<1\lambda < 1 \AA, while the binding energy of the muonic molecular deuterium ion delivers a constraint of α5/αEM105\alpha_5/\alpha_{EM} \sim 10^{-5} for λ<0.05\lambda < 0.05 \AA, where αEM\alpha_{EM} 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}
}
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