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相关论文: Viscous dark fluid Universe: a unified model of th…

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We investigate the cosmological perturbation dynamics for a universe consisting of pressureless baryonic matter and a viscous fluid, the latter representing a unified model of the dark sector. In the homogeneous and isotropic background the…

宇宙学与河外天体物理 · 物理学 2014-11-21 W. S. Hipólito-Ricaldi , H. E. S. Velten , W. Zimdahl

We model the cosmological substratum by a viscous fluid that is supposed to provide a unified description of the dark sector and pressureless baryonic matter. In the homogeneous and isotropic background the \textit{total} energy density of…

宇宙学与河外天体物理 · 物理学 2015-05-20 W Zimdahl , W S Hipólito-Ricaldi , H E S Velten

We propose a scenario in which the dark components of the Universe are manifestations of a single bulk viscous fluid. Using dynamical system methods, a qualitative study of the homogeneous, isotropic background scenario is performed in…

天体物理学 · 物理学 2008-12-18 R. Colistete , J. C. Fabris , J. Tossa , W. Zimdahl

We investigate in detail the possibility that a single imperfect fluid with bulk viscosity can replace the need for separate dark matter and dark energy in cosmological models. With suitable choices of model parameters, we show that the…

广义相对论与量子宇宙学 · 物理学 2009-07-30 Baojiu Li , John D. Barrow

The objective of the present work is to study a cosmological model for a spatially flat Universe whose constituents are a dark energy field and a matter field which includes baryons and dark matter. The constituents are supposed to be in…

广义相对论与量子宇宙学 · 物理学 2013-09-13 Gilberto M. Kremer , Octavio A. S. Sobreiro

We study a cosmological model composed of a dark energy fluid interacting with a viscous matter fluid in a spatially flat Universe. The matter component represents the baryon and dark matter and it is taken into account, through a bulk…

宇宙学与河外天体物理 · 物理学 2015-06-05 Arturo Avelino

Modern cosmology suggests that the Universe contains two dark components -- dark matter and dark energy -- both unkown in laboratory physics and both lacking direct evidence. Alternatively, a unified dark sector, described by a single…

宇宙学与河外天体物理 · 物理学 2011-09-21 Hermano Velten , Dominik J. Schwarz

The bulk viscosity is introduced to model unified dark matter. The viscous unified model assumes the universe is filled with a single fluid with the bulk viscosity. We review the general framework of the viscous cosmology. The Hubble…

宇宙学与河外天体物理 · 物理学 2015-05-20 Xu Dou , Xin-He Meng

The unified dark energy and dark matter model within the framework of a model of a continuous medium with bulk viscosity (dark fluid) is considered. It is supposed that the bulk viscosity coefficient is an arbitrary function of the Hubble…

天体物理学 · 物理学 2009-06-23 V. Folomeev , V. Gurovich

The universe content is considered as a non-perfect fluid with bulk viscosity and can be described by a general equation of state (endowed some deviation from the conventionally assumed cosmic perfect fluid model). An explicitly bulk…

天体物理学 · 物理学 2009-10-16 X H Meng , X Dou

The possibility that the present acceleration of the universe is driven by a kind of viscous fluid is exploited. At background level this model is similar to the generalized Chaplygin gas model (GCGM). But, at perturbative level, the…

天体物理学 · 物理学 2009-11-10 J. C. Fabris , S. V. B. Goncalves , R. de Sa Ribeiro

The Universe is modeled as a binary mixture whose constituents are described by a van der Waals fluid and by a dark energy density. The dark energy density is considered either as the quintessence or as the Chaplygin gas. The irreversible…

广义相对论与量子宇宙学 · 物理学 2009-11-10 G. M. Kremer

A new model for the universe filled with a generalized Chaplygin fluid is considered which unitarily describes as a single vacuum entity both a quintessence scalar field and a cosmological constant, so unifying the notion of dark energy.…

天体物理学 · 物理学 2008-11-26 Pedro F. Gonzalez-Diaz

We discuss the possibility to implement a viscous cosmological model, attributing to the dark matter component a behaviour described by bulk viscosity. Since bulk viscosity implies negative pressure, this rises the possibility to unify the…

宇宙学与河外天体物理 · 物理学 2015-12-04 C. M. S. Barbosa , J. C. Fabris , O. F. Piattella , H. E. S. Velten , W. Zimdahl

We model the cosmic medium as the mixture of a generalized Chaplygin gas and a pressureless matter component. Within a neo-Newtonian approach (in which, different from standard Newtonian cosmology, the pressure enters the homogeneous and…

天体物理学 · 物理学 2010-04-15 J. C. Fabris , S. V. B. Goncalves , H. E. S. Velten , W. Zimdahl

The cosmological observations suggest that the presently accelerating universe should be filled by an exotic form of matter, violating the strong energy condition, of unknown nature and origin. We propose the viscous dark matter of a source…

广义相对论与量子宇宙学 · 物理学 2020-08-05 Marek Szydlowski , Adam Krawiec

In this work we study in detail a phenomenological generalization of the Chaplygin cosmological model, which we call as \textit{umami} Chaplygin model. We consider three different cosmological background scenarios in which our fluid can…

宇宙学与河外天体物理 · 物理学 2019-03-04 Ruth Lazkoz , María Ortiz-Baños , Vincenzo Salzano

Unified dark matter models are appealing in that they describe the dark sector in terms of a single component. They however face problems when attempting to account for structure formation: in the linear regime, density fluctuations can…

宇宙学与河外天体物理 · 物理学 2015-09-16 Amr El-Zant

We model the dark sector of the cosmic substratum by a viscous fluid with an equation of state $p=-\zeta \Theta$, where $\Theta$ is the fluid-expansion scalar and $\zeta$ is the coefficient of bulk viscosity for which we assume a dependence…

宇宙学与河外天体物理 · 物理学 2009-06-25 W. S. Hipolito-Ricaldi , H. E. S. Velten , W. Zimdahl

The hypothesis that dark matter and dark energy are unified through the Chaplygin gas is reexamined. Using a generalization of the spherical model which incorporates effects of the acoustic horizon we show that an initially perturbative…

天体物理学 · 物理学 2007-05-23 Neven Bilic , Robert J. Lindebaum , Gary B. Tupper , Raoul D. Viollier
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