Luminosities of High-Redshift Objects in an Accelerating Universe
Abstract
The results from the Supernova Cosmology Project indicate a relation between cosmic distance and redshift that corresponds to an accelerating Universe, and, as a consequence, the presence of an energy component with negative pressure. This necessitates a re-evaluation of such astrophysical luminosities that have been derived through conventional redshift analyses of, e.g., gamma-ray bursts and quasars. We have calculated corrected luminosity distances within two scenarios; the standard one with a non-zero cosmological constant, and the more recently proposed ``quintessence'', with a slowly evolving energy-density component. We find luminosity corrections from +30 to -40 per cent for redshifts with . This finding implicates that the SCP data do not, by themselves, require a revision of the current, rather qualitative modeling of gamma-ray bursts and quasar properties.
Keywords
Cite
@article{arxiv.astro-ph/9904262,
title = {Luminosities of High-Redshift Objects in an Accelerating Universe},
author = {Daniel Enstrom and Sverker Fredriksson and Johan Hansson},
journal= {arXiv preprint arXiv:astro-ph/9904262},
year = {2007}
}
Comments
RevTeX, 4 pages, 2 postscript figures, submitted to PRL