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首页> 外文期刊>Annals of Physics >Dissipative or conservative cosmology with dark energy?
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Dissipative or conservative cosmology with dark energy?

机译:具有暗能量的耗散或保守宇宙学?

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All evolutional paths for all admissible initial conditions of FRW cosmological models with dissipative dust fluid (described by dark matter, baryonic matter and dark energy) are analyzed using dynamical system approach. With that approach, one is able to see how generic the class of solutions leading to the desired property-acceleration-is. The theory of dynamical systems also offers a possibility of investigating all possible solutions and their stability with tools of Newtonian mechanics of a particle moving in a one-dimensional potential which is parameterized by the cosmological scale factor. We demonstrate that flat cosmology with bulk viscosity can be treated as a conservative system with a potential function of the Chaplygin gas type. We characterize the class of dark energy models that admit late time de Sitter attractor solution in terms of the potential function of corresponding conservative system. We argue that inclusion of dissipation effects makes the model more realistic because of its structural stability. We also confront viscous models with SNIa observations. The best fitted models are obtained by minimizing the X-2 function which is illustrated by residuals and X-2 levels in the space of model independent parameters. The general conclusion is that SNla data supports the viscous model without the cosmological constant. The obtained values Of X-2 statistic are comparable for both the viscous model and Lambda CDM model. The Bayesian information criteria are used to compare the models with different power-law parameterization of viscous effects. Our result of this analysis shows that SNIa data supports viscous cosmology more than the Lambda CDM model if the coefficient in viscosity parameterization is fixed. The Bayes factor is also used to obtain the posterior probability of the model. (C) 2007 Elsevier lnc. All rights reserved.
机译:使用动力系统方法分析了带有耗散粉尘流体(用暗物质,重子物质和暗能量描述)的FRW宇宙学模型的所有可接受初始条件的所有演化路径。通过这种方法,人们可以看到导致所需属性加速的解决方案类别的通用性。动力学系统的理论还提供了一种可能性,即使用由宇宙学比例因子参数化的在一维势中运动的粒子的牛顿力学工具研究所有可能的解及其稳定性。我们证明,具有整体粘度的平面宇宙学可以被视为具有Chaplygin气体类型的潜在功能的保守系统。我们根据相应的保守系统的潜在功能,描述了允许延迟de Sitter吸引子解的一类暗能量模型。我们认为,由于其结构稳定性,耗散效应的包含使模型更加逼真。我们还使用SNIa观测值对付粘性模型。通过最小化X-2函数来获得最佳拟合模型,该函数由模型独立参数空间中的残差和X-2级别表示。总的结论是,SNla数据支持没有宇宙学常数的粘性模型。 X-2统计量的获得值对于粘性模型和Lambda CDM模型都是可比较的。贝叶斯信息标准用于比较具有粘性效应的不同幂律参数化的模型。我们的分析结果表明,如果粘度参数化的系数固定,则SNIa数据比Lambda CDM模型更支持粘性宇宙学。贝叶斯因子还用于获得模型的后验概率。 (C)2007 Elsevier lnc。版权所有。

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