arXiv:astro-ph/9805114·v1·Astrophysics
Observational Constraints On Power-Law Cosmologies
M. Kaplinghat🇺🇸 · G. Steigman🇺🇸 · I. Tkachev🇺🇸 · T. P. Walker🇺🇸
Abstract
In a class of models designed to solve the cosmological constant problem by coupling scalar or tensor classical fields to the space-time curvature, the universal scale factor grows as a power law in the age, , regardless of the matter content or cosmological epoch. We investigate constraints on such "power-law cosmologies" from the present age of the Universe, the magnitude-redshift relation, and from primordial nucleosynthesis. Constraints from the current age of the Universe and from the high-redshift supernovae data require "large" (), while consistency with the inferred primordial abundances of deuterium and helium-4 forces to lie in a very narrow range around a lower value (). Inconsistency between these independent cosmological constraints suggests that such power-law cosmologies are not viable.
Comments: 5 pages, 5 embedded eps figures; submitted to Physics Letters B