A Search for deviations from the inverse square law of gravity at nm range using a pulsed neutron beam
Abstract
We describe an experimental search for deviations from the inverse square law of gravity at the nanometer length scale using neutron scattering from noble gases on a pulsed slow neutron beamline. By measuring the neutron momentum transfer () dependence of the differential cross section for xenon and helium and comparing to their well-known analytical forms, we place an upper bound on the strength of a new interaction as a function of interaction length which improves upon previous results in the region nm, and remains competitive in the larger region. A pseudoexperimental simulation developed for this experiment and its role in the data analysis described. We conclude with plans for improving sensitivity in the larger region.
Keywords
Cite
@article{arxiv.1712.02984,
title = {A Search for deviations from the inverse square law of gravity at nm range using a pulsed neutron beam},
author = {Christopher C. Haddock and Noriko Oi and Katsuya Hirota and Takashi Ino and Masaaki Kitaguchi and Satoru Matsumoto and Kenji Mishima and Tatsushi Shima and Hirohiko M. Shimizu and W. Michael Snow and Tamaki Yoshioka},
journal= {arXiv preprint arXiv:1712.02984},
year = {2018}
}
Comments
8 pages, 8 figures