Intermediate homogenization of the Universe and the problem of gravitational entropy

被引:14
作者
Bolejko, Krzysztof [1 ]
Stoeger, William R. [2 ]
机构
[1] Univ Sydney, Sydney Inst Astron, Sydney, NSW 2006, Australia
[2] Univ Arizona, Vatican Observ Res Grp, Tucson, AZ 85721 USA
关键词
MICROWAVE BACKGROUND ANOMALIES; ISOTROPIC SINGULARITIES; COSMOLOGICAL MODELS; LOCAL VOIDS; INFLATION; EVOLUTION; INHOMOGENEITY; HOMOGENEITY; ORIGIN;
D O I
10.1103/PhysRevD.88.063529
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
This paper studies intermediate homogenization of inhomogeneous cosmological models. It shows that spherically symmetric models, regardless of the equation of state, can undergo intermediate homogenization; i.e., a model can approach a homogeneous and isotropic state (which acts as a saddle point) from a relatively wide range of initial inhomogeneous conditions. The homogenization is not permanent-just temporary. Eventually, the model evolves toward a future inhomogeneous state. We also looked at the problem of the gravitational entropy. All definitions of entropy that we checked give decreasing gravitational entropy during the homogenization process. Thus, we should either accept that gravitational entropy can decrease or try to define it in other ways than just via density gradients, as these decrease during homogenization.
引用
收藏
页数:8
相关论文
共 63 条
[41]   ISOTROPY OF UNIVERSE [J].
MISNER, CW .
ASTROPHYSICAL JOURNAL, 1968, 151 (2P1) :431-&
[42]   MIXMASTER UNIVERSE [J].
MISNER, CW .
PHYSICAL REVIEW LETTERS, 1969, 22 (20) :1071-&
[43]  
Mukhanov V., 2005, Physical Foundations of Cosmology, DOI [10.2277/0521563984, DOI 10.2277/0521563984]
[44]  
PENROSE R, 1989, ANN NY ACAD SCI, V571, P249
[45]  
Penrose R., 1979, General relativity. An Einstein centenary survey, P581
[46]   Measurements of Ω and Λ from 42 high-redshift supernovae [J].
Perlmutter, S ;
Aldering, G ;
Goldhaber, G ;
Knop, RA ;
Nugent, P ;
Castro, PG ;
Deustua, S ;
Fabbro, S ;
Goobar, A ;
Groom, DE ;
Hook, IM ;
Kim, AG ;
Kim, MY ;
Lee, JC ;
Nunes, NJ ;
Pain, R ;
Pennypacker, CR ;
Quimby, R ;
Lidman, C ;
Ellis, RS ;
Irwin, M ;
McMahon, RG ;
Ruiz-Lapuente, P ;
Walton, N ;
Schaefer, B ;
Boyle, BJ ;
Filippenko, AV ;
Matheson, T ;
Fruchter, AS ;
Panagia, N ;
Newberg, HJM ;
Couch, WJ .
ASTROPHYSICAL JOURNAL, 1999, 517 (02) :565-586
[47]  
Plebanski J., 2006, An introduction to general relativity and cosmology
[48]   ON THE THERMODYNAMICS OF SIMPLE NONISENTROPIC PERFECT FLUIDS IN GENERAL-RELATIVITY [J].
QUEVEDO, H ;
SUSSMAN, RA .
CLASSICAL AND QUANTUM GRAVITY, 1995, 12 (03) :859-874
[49]   LARGE-SCALE DENSITY INHOMOGENEITIES IN UNIVERSE [J].
REES, MJ ;
SCIAMA, DW .
NATURE, 1968, 217 (5128) :511-&
[50]   Observational evidence from supernovae for an accelerating universe and a cosmological constant [J].
Riess, AG ;
Filippenko, AV ;
Challis, P ;
Clocchiatti, A ;
Diercks, A ;
Garnavich, PM ;
Gilliland, RL ;
Hogan, CJ ;
Jha, S ;
Kirshner, RP ;
Leibundgut, B ;
Phillips, MM ;
Reiss, D ;
Schmidt, BP ;
Schommer, RA ;
Smith, RC ;
Spyromilio, J ;
Stubbs, C ;
Suntzeff, NB ;
Tonry, J .
ASTRONOMICAL JOURNAL, 1998, 116 (03) :1009-1038