首页> 外文OA文献 >Cosmological dynamics and dark energy with a quadratic equation of state: anisotropic models, large-scale perturbations, and cosmological singularities
【2h】

Cosmological dynamics and dark energy with a quadratic equation of state: anisotropic models, large-scale perturbations, and cosmological singularities

机译:具有二次状态方程的宇宙动力学和暗能量:各向异性模型,大尺度扰动和宇宙学奇点

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

In standard general-relativistic cosmology, for fluids with a linear equation of state (EoS) P=wρ or scalar fields, the high isotropy of the universe requires special initial conditions: singularities are velocity dominated and anisotropic in general. In brane world effective 4-dimensional cosmological models an effective term, quadratic in the energy density, appears in the evolution equations, which has been shown to be responsible for the suppression of anisotropy and inhomogeneities at the singularity under reasonable assumptions. Thus in the brane world isotropy is generically built in, and singularities are matter dominated. There is no reason why the effective EoS of matter should be linear at the highest energies, and an effective nonlinear EoS may describe dark energy or unified dark matter (Paper I [ K. Ananda and M. Bruni Phys. Rev. D 74 023523 (2006)]). In view of this, here we investigate the effects of a quadratic EoS in homogenous and inhomogeneous anisotropic cosmological models in general relativity, in order to understand if in this standard context the quadratic EoS can isotropize the universe at early times. With respect to Paper I [ K. Ananda and M. Bruni Phys. Rev. D 74 023523 (2006)], here we use the simplified EoS P=αρ+ρ2/ρc, which still allows for an effective cosmological constant and phantom behavior, and is general enough to analyze the dynamics at high energies. We first study homogenous and anisotropic Bianchi I and V models, focusing on singularities. Using dynamical systems methods, we find the fixed points of the system and study their stability. We find that models with standard nonphantom behavior are in general asymptotic in the past to an isotropic fixed point IS, i.e. in these models even an arbitrarily large anisotropy is suppressed in the past: the singularity is matter dominated. Using covariant and gauge-invariant variables, we then study linear anisotropic and inhomogeneous perturbations about the homogenous and isotropic spatially flat models with a quadratic EoS. We find that, in the large-scale limit, all perturbations decay asymptotically in the past, indicating that the isotropic fixed point IS is the general asymptotic past attractor for nonphantom inhomogeneous models with a quadratic EoS
机译:在标准的相对论宇宙学中,对于状态线性方程(EoS)P =wρ或标量场的流体,宇宙的高各向同性要求特殊的初始条件:奇异性通常是速度主导且各向异性。在世界上有效的4维宇宙学模型中,演化方程中出现了一个能量密度为二次方的有效项,在合理的假设下,它已被证明可以抑制奇异性的各向异性和不均匀性。因此,在麸皮世界中,一般都建立了各向同性,而奇异性是物质占主导地位。没有理由说明在最高能量下物质的有效EoS应该是线性的,而有效的非线性EoS可以描述暗能量或统一的暗物质(论文I [K. Ananda and M. Bruni Phys。Rev. D 74 023523( 2006)]。有鉴于此,我们在广义相对论中研究了二次方EoS在同质和非均质各向异性宇宙学模型中的作用,以便了解在这种标准情况下二次方EoS是否可以在早期使各向同性。关于论文I [K. Ananda和M. Bruni Phys。 Rev. D 74 023523(2006)],这里我们使用简化的EoS P =αρ+ρ2/ρc,它仍然允许有效的宇宙学常数和幻像行为,并且足以分析高能动力学。我们首先研究奇异性的同质和各向异性Bianchi I和V模型。使用动力学系统方法,我们找到系统的固定点并研究其稳定性。我们发现具有标准非幻像行为的模型在过去通常是各向同性不动点IS的渐近点,即在这些模型中,过去甚至可以抑制任意大的各向异性:奇异性是物质主导的。然后,使用协变和规范不变变量,研究具有二次EoS的同质和各向同性空间平面模型的线性各向异性和非均匀摄动。我们发现,在大范围内,所有扰动都在过去渐近衰减,这表明各向同性不动点IS是具有二次EoS的非幻影不均匀模型的一般渐近过去吸引子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号