Constraining the generalized uncertainty principle with the atomic weak-equivalence-principle test
General Relativity and Quantum Cosmology
2017-04-18 v1
Abstract
Various models of quantum gravity imply the Planck-scale modifications of Heisenberg's uncertainty principle into a so-called generalized uncertainty principle (GUP). The GUP effects on high-energy physics, cosmology, and astrophysics have been extensively studied. Here, we focus on the weak-equivalence-principle (WEP) violation induced by the GUP. Results from the WEP test with the Rb-Rb dual-species atom interferometer are used to set upper bounds on parameters in two GUP proposals. A -level bound on the Kempf-Mangano-Mann proposal, and a -level bound on Maggiore's proposal, which are consistent with bounds from other experiments, are obtained. All these bounds have huge room for improvement in the future.
Cite
@article{arxiv.1704.02037,
title = {Constraining the generalized uncertainty principle with the atomic weak-equivalence-principle test},
author = {Dongfeng Gao and Jin Wang and Mingsheng Zhan},
journal= {arXiv preprint arXiv:1704.02037},
year = {2017}
}
Comments
7 pages, 1 figure