Measurements of the Cosmological Parameters Ω and Λ from the First Seven Supernovae at z ≥ 0.35

Измерения космологических параметров Ω и Λ по первым семи сверхновым при z ≥ 0,35
S. Perlmutter, S. Gabi, G. Goldhaber, A. Goobar, D. E. Groom, I. Hook, Alex Kim, M. Y. Kim, J. C. Lee, R. Pain, C. Pennypacker, I. Small, Richard S. Ellis, R. G. McMahon, B. J. Boyle, P. Bunclark, D. Carter, M. J. Irwin, Karl Glazebrook, Heidi Jo Newberg, A. V. Filippenko, T. Matheson, M. A. Dopita, W. J. Couch, (The Supernova Cosmology Project)
1997-07-10

Friedmann-Lemaître cosmologiesSupernova Cosmology ProjectType Ia supernovaecosmological parameterswidth-luminosity relation
We have developed a technique to systematically discover and study high-redshift supernovae that can be used to measure the cosmological parameters. We report here results based on the initial seven of more than 28 supernovae discovered to date in the high-redshift supernova search of the Supernova Cosmology Project. We find an observational dispersion in peak magnitudes of σ M B =0.27; this dispersion narrows to σ M B, corr =0.19 after "correcting" the magnitudes using the light-curve "width-luminosity" relation found for nearby ( z ≤ 0.1) Type Ia supernovae from the Calán/Tololo survey (Hamuy et al.). Comparing light-curve width-corrected magnitudes as a function of redshift of our distant ( z = 0.35-0.46) supernovae to those of nearby Type Ia supernovae yields a global measurement of the mass density, Ω M =0.88 + 0.69 −0.60 for a Λ = 0 cosmology. For a spatially flat universe (i.e., Ω M + Ω Λ = 1), we find Ω M =0.94 + 0.34 −0.28 or, equivalently, a measurement of the cosmological constant, Ω Λ =0.06 + 0.28 −0.34 ( < 0.51 at the 95% confidence level). For the more general Friedmann-Lemaître cosmologies with independent Ω M and Ω Λ , the results are presented as a confidence region on the Ω M -Ω Λ plane. This region does not correspond to a unique value of the deceleration parameter q 0 . We present analyses and checks for statistical and systematic errors and also show that our results do not depend on the specifics of the width-luminosity correction. The results for Ω Λ -versus-Ω M are inconsistent with Λ-dominated, low-density, flat cosmologies that have been proposed to reconcile the ages of globular cluster stars with higher Hubble constant values.
1
A systematic high-redshift supernova search produced more than 28 discoveries; results from the first seven supernovae at z = 0.35–0.46 were analyzed.
2
Assuming spatial flatness, the analysis found Ω_M = 0.94^{+0.34}_{−0.28}, equivalently Ω_Λ = 0.06^{+0.28}_{−0.34}, with Ω_Λ < 0.51 at 95% confidence.
3
For a Λ = 0 cosmology, the supernova comparison yielded Ω_M = 0.88^{+0.69}_{−0.60}.
4
The allowed Ω_M–Ω_Λ region was inconsistent with Λ-dominated, low-density, flat cosmologies proposed to reconcile globular-cluster ages with higher Hubble constants, and results were robust to width–luminosity correction details.
5
The observed peak-magnitude dispersion was σ_M_B = 0.27, narrowing to σ_M_B,corr = 0.19 after applying the nearby Type Ia width–luminosity relation.

High-redshift Type Ia supernovae at z = 0.35–0.46, compared with nearby Type Ia supernovae

The inferred cosmological density parameters ΩM and ΩΛ, including their constraints and consistency with Friedmann–Lemaître cosmologies

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1997-07-10
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Authors
S. Perlmutter
S. Gabi
G. Goldhaber
A. Goobar
D. E. Groom
I. Hook
Alex Kim
M. Y. Kim
J. C. Lee
R. Pain
C. Pennypacker
I. Small
Richard S. Ellis
R. G. McMahon
B. J. Boyle
P. Bunclark
D. Carter
M. J. Irwin
Karl Glazebrook
Heidi Jo Newberg
A. V. Filippenko
T. Matheson
M. A. Dopita
W. J. Couch
(The Supernova Cosmology Project)
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