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Open AccessJournal ArticleDOI

Improved Cosmological Constraints from New, Old and Combined Supernova Datasets

TLDR
In this article, the authors present a new compilation of Type Ia supernovae (SNe Ia), a new dataset of low-redshift nearby-Hubble-flow SNe and new analysis procedures to work with these heterogeneous compilations.
Abstract
We present a new compilation of Type Ia supernovae (SNe Ia), a new dataset of low-redshift nearby-Hubble-flow SNe and new analysis procedures to work with these heterogeneous compilations. This ``Union'' compilation of 414 SN Ia, which reduces to 307 SNe after selection cuts, includes the recent large samples of SNe Ia from the Supernova Legacy Survey and ESSENCE Survey, the older datasets, as well as the recently extended dataset of distant supernovae observed with HST. A single, consistent and blind analysis procedure is used for all the various SN Ia subsamples, and a new procedure is implemented that consistently weights the heterogeneous data sets and rejects outliers. We present the latest results from this Union compilation and discuss the cosmological constraints from this new compilation and its combination with other cosmological measurements (CMB and BAO). The constraint we obtain from supernovae on the dark energy density is $\Omega_\Lambda= 0.713^{+0.027}_{-0.029} (stat)}^{+0.036}_{-0.039} (sys)}$, for a flat, LCDM Universe. Assuming a constant equation of state parameter, $w$, the combined constraints from SNe, BAO and CMB give $w=-0.969^{+0.059}_{-0.063}(stat)^{+0.063}_{-0.066} (sys)$. While our results are consistent with a cosmological constant, we obtain only relatively weak constraints on a $w$ that varies with redshift. In particular, the current SN data do not yet significantly constrain $w$ at $z>1$. With the addition of our new nearby Hubble-flow SNe Ia, these resulting cosmological constraints are currently the tightest available.

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Journal ArticleDOI

Constraining redshift parametrization parameters of dark energy: loop quantum gravity as back ground

TL;DR: In this paper, three parameterizations have been proposed for the variations of the EOS parameter ω(z) and they are Linear, CPL and JBP parameterizations, and the best-fit values and bounds of the parameters are obtained by 66 %, 90 % and 99 % confidence levels.
Journal ArticleDOI

Highlights and Discoveries from the Chandra X-ray Observatory

TL;DR: Highlights are presented that illustrate how observations using Chandra have deepened, and in some instances revolutionized, the understanding of topics as diverse as protoplanetary nebulae; massive stars; supernova explosions; pulsar wind ne Bulae; the superfluid interior of neutron stars; accretion flows around black holes; and properties of dark matter and dark energy.
Posted Content

Estimation of the Hubble Constant and Constraint on Descriptions of Dark Energy

TL;DR: In this article, the authors identify redshifts 0.02 −0.02 0.2, out of ~100 known masers, and estimate the Hubble constant from a single-dish discovery survey.
Book ChapterDOI

Summary / Final Thoughts

David Merritt
Journal ArticleDOI

Latest observational constraints on Cardassian models

TL;DR: In this paper, the authors examined the effect of the modified polytropic Cardassian model on the acceleration of the universe and showed that an evolutionary quintessence dark energy model is favored.
References
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Journal ArticleDOI

Maps of Dust Infrared Emission for Use in Estimation of Reddening and Cosmic Microwave Background Radiation Foregrounds

TL;DR: In this article, a reprocessed composite of the COBE/DIRBE and IRAS/ISSA maps, with the zodiacal foreground and confirmed point sources removed, is presented.
Journal ArticleDOI

The relationship between infrared, optical, and ultraviolet extinction

TL;DR: In this article, the average extinction law over the 3.5 micron to 0.125 wavelength range was derived for both diffuse and dense regions of the interstellar medium. And the validity of the law over a large wavelength interval suggests that the processes which modify the sizes and compositions of grains are stochastic in nature.
Journal ArticleDOI

Detection of the baryon acoustic peak in the large-scale correlation function of SDSS luminous red galaxies

Daniel J. Eisenstein, +51 more
TL;DR: In this paper, a large-scale correlation function measured from a spectroscopic sample of 46,748 luminous red galaxies from the Sloan Digital Sky Survey is presented, which demonstrates the linear growth of structure by gravitational instability between z ≈ 1000 and the present and confirms a firm prediction of the standard cosmological theory.
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Detection of the baryon acoustic peak in the large-scale correlation function of SDSS luminous red galaxies

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