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Inflation with a smooth constant-roll to constant-roll era transition

机译:用光滑的恒定卷转移到恒定的轧制时代过渡

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In this paper, we study canonical scalar field models, with a varying second slow-roll parameter, that allow transitions between constant-roll eras. In the models with two constant-roll eras, it is possible to avoid fine-tunings in the initial conditions of the scalar field. We mainly focus on the stability of the resulting solutions, and we also investigate if these solutions are attractors of the cosmological system. We shall calculate the resulting scalar potential and, by using a numerical approach, we examine the stability and attractor properties of the solutions. As we show, the first constant-roll era is dynamically unstable towards linear perturbations, and the cosmological system is driven by the attractor solution to the final constant-roll era. As we demonstrate, it is possible to have a nearly scale-invariant power spectrum of primordial curvature perturbations in some cases; however, this is strongly model dependent and depends on the rate of the final constant-roll era. Finally, we present, in brief, the essential features of a model that allows oscillations between constant-roll eras.
机译:在本文中,我们研究了规范标量场模型,具有不同的第二慢辊参数,允许在恒定滚动时代之间过渡。在具有两个恒定滚动时代的模型中,可以避免标量字段的初始条件中的微调。我们主要关注所产生的解决方案的稳定性,我们还研究了这些解决方案是否是宇宙学系统的吸引子。我们将计算所产生的标量电位,并通过使用数值方法来检查解决方案的稳定性和吸引子属性。正如我们所示,第一恒定卷时代朝向线性扰动动态不稳定,并且宇宙学系统由吸引器解决方案驱动到最终恒定辊时代。正如我们所示,在某些情况下,可以在某些情况下具有几乎缩放的原始曲率扰动的功率谱;然而,这是依赖的强烈的模型,取决于最终恒定卷时代的速率。最后,我们简而言之,允许恒定卷时振荡振荡的模型的基本特征。

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