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20 April 2024
 
  » arxiv » astro-ph/0305008

 Article overview


Cosmological Results from High-z Supernovae
John L. Tonry ; Brian P. Schmidt ; Brian Barris ; Pablo Candia ; Peter Challis ; Alejandro Clocchiatti ; Alison L. Coil ; Alexei V. Filippenko ; Peter Garnavich ; Craig Hogan ; Stephen T. Holland ; Saurabh Jha ; Robert P. Kirshner ; Kevin Krisciunas ; Bruno Leibundgut ; Weidong Li ; Thomas Matheson ; Mark M. Phillips ; Adam G. Riess ; Robert Schommer ; R. Chris Smith ; Jesper Sollerman ; Jason Spyromilio ; Christopher W. Stubbs ; Nicholas B. Suntzeff ;
Date 1 May 2003
Journal Astrophys.J. 594 (2003) 1-24
Subject astro-ph
AbstractThe High-z Supernova Search Team has discovered and observed 8 new supernovae in the redshift interval z=0.3-1.2. These independent observations, confirm the result of Riess et al. (1998a) and Perlmutter et al. (1999) that supernova luminosity distances imply an accelerating universe. More importantly, they extend the redshift range of consistently observed SN Ia to z~1, where the signature of cosmological effects has the opposite sign of some plausible systematic effects. Consequently, these measurements not only provide another quantitative confirmation of the importance of dark energy, but also constitute a powerful qualitative test for the cosmological origin of cosmic acceleration. We find a rate for SN Ia of 1.4+/-0.5E-04 h^3/Mpc^3/yr at a mean redshift of 0.5. We present distances and host extinctions for 230 SN Ia. These place the following constraints on cosmological quantities: if the equation of state parameter of the dark energy is w=-1, then H0 t0 = 0.96+/-0.04, and O_l - 1.4 O_m = 0.35+/-0.14. Including the constraint of a flat Universe, we find O_m = 0.28+/-0.05, independent of any large-scale structure measurements. Adopting a prior based on the 2dF redshift survey constraint on O_m and assuming a flat universe, we find that the equation of state parameter of the dark energy lies in the range -1.48-1, we obtain w<-0.73 at 95% confidence. These constraints are similar in precision and in value to recent results reported using the WMAP satellite, also in combination with the 2dF redshift survey.
Source arXiv, astro-ph/0305008
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