Constraints on the String T-Duality Propagator from the Hydrogen Atom
Abstract
We investigate the implications of a string-theory modified propagator in the high-precision regime of quantum mechanics. In particular, we examine the situation in which string theory is compactified at the T-duality self-dual radius. The corresponding propagator is closely related to the one derived from the path integral duality. Our focus is on the hydrogen ground state energy and the transition frequency as they are the most precisely explored properties of the hydrogen atom. In our analysis, the T-duality propagator affects the photon field leading to a modified Coulomb potential. Thus, our study is complementary to investigations where the electron evolution is modified as in studies of a minimal length in the context of the generalized uncertainty principle. The first manifestation of the T-duality propagator arises at fourth order in the fine-structure constant, including a logarithmic term. The constraints on the underlying parameter, the zero-point length, reach down to and are in full agreement with previous studies on black holes.
Cite
@article{arxiv.1910.08203,
title = {Constraints on the String T-Duality Propagator from the Hydrogen Atom},
author = {Michael F. Wondrak and Marcus Bleicher},
journal= {arXiv preprint arXiv:1910.08203},
year = {2019}
}
Comments
12 pages, 3 figures. Invited contribution to the special issue "Modified Theories of Gravity" by Symmetry