Imitating accelerated expansion of the Universe by matter inhomogeneities: corrections of some misunderstandings

被引:0
|
作者
Andrzej Krasiński
Charles Hellaby
Krzysztof Bolejko
Marie-Noëlle Célérier
机构
[1] N. Copernicus Astronomical Centre,Astrophysics, Cosmology and Gravity Centre, Department of Mathematics and Applied Mathematics
[2] Polish Academy of Sciences,Laboratoire Univers et Théories (LUTH), Observatoire de Paris, CNRS
[3] University of Cape Town,undefined
[4] Université Paris-Diderot,undefined
来源
General Relativity and Gravitation | 2010年 / 42卷
关键词
Exact solutions; Cosmology; Inhomogeneous cosmological models;
D O I
暂无
中图分类号
学科分类号
摘要
A number of misunderstandings about modeling the apparent accelerated expansion of the Universe and about the ‘weak singularity’ are clarified: (1) Of the five definitions of the deceleration parameter given by Hirata and Seljak (HS), only q1 is a correct invariant measure of acceleration/deceleration of expansion. The q3 and q4 are unrelated to acceleration in an inhomogeneous model. (2) The averaging over directions involved in the definition of q4 does not correspond to what is done in observational astronomy. (3) HS’s equation (38) connecting q4 to the flow invariants gives self-contradictory results when applied at the centre of symmetry of the Lemaître–Tolman (L–T) model. The intermediate equation (31) that determines q3' is correct, but approximate, so it cannot be used for determining the sign of the deceleration parameter. Even so, at the centre of symmetry of the L–T model, it puts no limitation on the sign of q3'(0). (4) The ‘weak singularity’ of Vanderveld et al. is a conical profile of mass density at the centre—a perfectly acceptable configuration. (5) The so-called ‘critical point’ in the equations of the ‘inverse problem’ for a central observer in an L–T model is a manifestation of the apparent horizon (AH)—a common property of the past light cones in zero-lambda L–T models, perfectly manageable if the equations are correctly integrated.
引用
收藏
页码:2453 / 2475
页数:22
相关论文
共 29 条