Constraining the dark energy and smoothness-parameter with supernovae

dc.creatorSantos, R. C.
dc.creatorCunha, J. V.
dc.creatorLima, J. A. S.
dc.date2007-09-24
dc.date2008-03-01
dc.date.accessioned2026-07-07T11:19:33Z
dc.date.available2026-07-07T11:19:33Z
dc.descriptionThe presence of inhomogeneities modifies the cosmic distances through the gravitational lensing effect, and, indirectly, must affect the main cosmological tests. Assuming that the dark energy is a smooth component, the simplest way to account for the influence of clustering is to suppose that the average evolution of the expanding Universe is governed by the total matter-energy density whereas the focusing of light is only affected by a fraction of the total matter density quantified by the $α$ Dyer-Roeder parameter. By using two different samples of SNe type Ia data, the $Ω_m$ and $α$ parameters are constrained by applying the Zeldovich-Kantowski-Dyer-Roeder (ZKDR) luminosity distance redshift relation for a flat ($Λ$CDM) model. A $χ^{2}$-analysis using the 115 SNe Ia data of Astier {\it et al.} sample (2006) constrains the density parameter to be $Ω_m=0.26_{-0.07}^{+0.17}$($2σ$) while the $α$ parameter is weakly limited (all the values $\in [0,1]$ are allowed even at 1$σ$). However, a similar analysis based the 182 SNe Ia data of Riess {\it et al.} (2007) constrains the pair of parameters to be $Ω_m= 0.33^{+0.09}_{-0.07}$ and $α\geq 0.42$ ($2σ$). Basically, this occurs because the Riess {\it et al.} sample extends to appreciably higher redshifts. As a general result, even considering the existence of inhomogeneities as described by the smoothness $α$ parameter, the Einstein-de Sitter model is ruled out by the two samples with a high degree of statistical confidence ($11.5σ$ and $9.9σ$, respectively). The inhomogeneous Hubble-Sandage diagram discussed here highlight the necessity of the dark energy, and a transition deceleration/accelerating phase at $z\sim 0.5$ is also required.
dc.description6 pages, 8 figures, typos corrected, paper matching the version published in Physical Review D
dc.identifierhttps://arxiv.org/abs/0709.3679
dc.identifierhttp://arxiv.org/abs/0709.3679
dc.identifierPhys.Rev.D77:023519,2008
dc.identifierdoi:10.1103/PhysRevD.77.023519
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/193718
dc.subjectAstrophysics
dc.titleConstraining the dark energy and smoothness-parameter with supernovae
dc.typetext

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