arXiv:1508.06083·v1·High Energy Physics — Phenomenology
On the Stability of Fundamental Couplings in the Galaxy
S. M. João🇵🇹 · C. J. A. P. Martins🇵🇹 · I. S. A. B. Mota🇵🇹 · P. M. T. Vianez🇵🇹
Abstract
Astrophysical tests of the stability of Nature's fundamental couplings are a key probe of the standard paradigms in fundamental physics and cosmology. In this report we discuss updated constraints on the stability of the fine-structure constant and the proton-to-electron mass ratio within the Galaxy. We revisit and improve upon the analysis by Truppe {\it et al.} by allowing for the possibility of simultaneous variations of both couplings and also by combining them with the recent measurements by Levshakov {\it et al.} By considering representative unification scenarios we find no evidence for variations of at the 0.4 ppm level, and of at the 0.6 ppm level; if one uses the Levshakov bound on as a prior, the bound is improved to 0.1 ppm. We also highlight how these measurements can constrain (and discriminate among) several fundamental physics paradigms.
Comments: 7 pages, 1 figure