论文标题
宇宙深色液体中的自我交流:状态方程的四主流变延伸
Self-interaction in a cosmic dark fluid: The four-kernel rheological extension of the equations of state
论文作者
论文摘要
我们在流变方法的框架中建立了一种新的自洽模型,在宇宙暗能和暗物质之间建立了耦合,该模型基于国家方程的代表,以伏特拉型的整体操作员的形式表示。我们详细阐述了所谓的四主模型,在框架内,暗物质和暗物质压力都由两个积分呈现,其中包含深色能量和深色物质的能量密度。对于Volterra运算符,其核与褪色记忆的影响相关,相应的各向同性均质宇宙学模型被证明是完全可集成的。我们基于与提出模型的密钥方程相关的特征多项式的根的分析,考虑了模型精确解的分类。暗能和暗物质的压力和能量密度的标量,哈勃函数和加速参数被明确表示为无量纲尺度因子的功能。作为宇宙学时间的功能的比例因子在四足动物中找到,并在分析,定性和数值上进行描述。渐近分析使我们能够将模型分类有关大裂口,小撕裂和伪RIP(Sitter类型)的典型行为。讨论了两种有趣的精确宇宙学解决方案,其中描述了超指定膨胀和对称弹跳。提出了新的解决方案,与深色流体和宇宙的几何特征的状态函数的准周期行为相对应。
We establish a new self-consistent model of coupling between the cosmic dark energy and dark matter in the framework of the rheological approach, which is based on the representation of the equations of state in terms of integral operators of the Volterra-type. We elaborate the so-called four-kernel model, in the framework of which both the dark energy and dark matter pressures are presented by two integrals containing the energy densities of the dark energy and dark matter. For the Volterra operators, the kernels of which are associated with the effects of fading memory, the corresponding isotropic homogeneous cosmological model is shown to be exactly integrable. We consider the classification of the model exact solutions, based on the analysis of roots of the characteristic polynomial associated with the key equation of the presented model. The scalars of the pressure and energy-density of the dark energy and dark matter, the Hubble function and acceleration parameter are presented explicitly as the functions of the dimensionless scale factor. The scale factor as the function of the cosmological time is found in quadratures and is described analytically, qualitatively and numerically. Asymptotic analysis allowed us to classify the models with respect to behavior typical for the Big Rip, Little Rip and Pseudo Rip (de Sitter type). Two intriguing exact cosmological solutions are discussed, which describe the super-exponential expansion and the symmetric bounce. New solutions are presented, which correspond to the quasi-periodic behavior of the state functions of the dark fluid and of the geometric characteristics of the Universe.