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IMPROVEMENTS IN THE SPHERICAL COLLAPSE MODEL AND DARK ENERGY COSMOLOGIES

机译:球形塌陷模型和暗能量宇宙学的改进

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In the present paper, we study how the effects of deviations from spherical symmetry of a system, produced by angular momentum, and shear stress, influence typical parameters of the spherical collapse model, like the linear density threshold for collapse of the non-relativistic component (S) and its virial overdensity (Delta(V)). The study is performed in the framework of the Einstein-de Sitter and ACDM models, and assuming that the vacuum component is not clustering within the homogeneous non-spherical overdensities. We start from the standard spherical top hat model (SCM) which does not take account the non-spherical effects, and we add to this model the shear term and angular momentum term, which are finally expressed in terms of the density contrast, delta. We find that the non-spherical terms change the non-linear evolution of the system and that the collapse stops "naturally" at the virial radius, differently from the standard spherical collapse model. Moreover, shear and rotation gives rise to higher values of the linear overdensity parameter and different values of Delta(V) with respect to the standard spherical collapse model.
机译:在本文中,我们研究了由角动量和切应力产生的偏离系统球面对称性的影响如何影响球面坍塌模型的典型参数,例如非相对论分量坍塌的线性密度阈值(S)及其病毒密度(Delta(V))。该研究是在Einstein-de Sitter模型和ACDM模型的框架下进行的,并假设真空分量未在均匀的非球面密度内聚集。我们从不考虑非球面效应的标准球形高顶礼帽模型(SCM)开始,然后向该模型中添加剪切项和角动量项,这些项最终以密度对比度delta表示。我们发现非球面项改变了系统的非线性演化,并且塌陷在垂直半径处“自然地”停止,这与标准的球形塌陷模型不同。此外,相对于标准球形塌陷模型,剪切和旋转会产生较高的线性过密度参数值和不同的Delta(V)值。

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