Constraints on short-range spin-dependent interactions from scalar spin-spin coupling in deuterated molecular hydrogen
Abstract
A comparison between existing measurements and calculations of the scalar spin-spin interaction (J-coupling) in deuterated molecular hydrogen (HD) yields stringent constraints on anomalous spin-dependent potentials between nucleons at the atomic scale (). The dimensionless coupling constant associated with exchange of pseudoscalar (axion-like) bosons between nucleons is constrained to be less than for boson masses in the range of . This represents improvement by a factor of about 100 over constraints placed by measurements of the dipole-dipole interaction in molecular . The dimensionless coupling constant associated with exchange of a heretofore undiscovered axial-vector boson between nucleons is constrained to be for bosons of mass , improving constraints at this distance scale by a factor of 100 for proton-proton couplings and more than 8 orders of magnitude for neutron-proton couplings. This limit is also a factor of 100 more stringent than recent constraints obtained for axial-vector couplings between electrons and nucleons obtained from comparison of measurements and calculations of hyperfine structure.
Keywords
Cite
@article{arxiv.1203.6894,
title = {Constraints on short-range spin-dependent interactions from scalar spin-spin coupling in deuterated molecular hydrogen},
author = {Micah Ledbetter and Michael Romalis and Derek Jackson-Kimball},
journal= {arXiv preprint arXiv:1203.6894},
year = {2015}
}
Comments
4 pages 2 figures