论文标题
在背景和扰动水平上的标量场演变的广泛电势
Scalar field evolution at background and perturbation levels for a broad class of potentials
论文作者
论文摘要
在本文中,我们使用$ f $ -DEVISER方法研究了一个非相互作用的标量宇宙宇宙学,该方法依赖于电势的不同性能。使用这种替代数学方法,我们在标量场的背景和具有任意势能的扰动水平上提出了统一的动态系统分析。为了说明,我们考虑了单一和双重指数的潜力。这两类电位包括几类标量场电位的渐近行为,因此,它们为任意电位的典型行为提供了骨骼。此外,我们通过考虑三个标量扰动来分析毫无疑问的情况下的线性宇宙学扰动:Bardeen电位的演变,共同的曲率扰动,所谓的Sasaki-Mukhanov变量或所谓的Sasaki-Mukhanov变量或均匀曲率曲率测量值的标量场触发。最后,提出了每个标量扰动的详尽动力学系统分析,包括在存在物质的情况下Bardeen电位的演变。
In this paper, we investigate a non-interacting scalar field cosmology with an arbitrary potential using the $f$-deviser method that relies on the differentiability properties of the potential. Using this alternative mathematical approach, we present a unified dynamical system analysis at a scalar field's background and perturbation levels with arbitrary potentials. For illustration, we consider a monomial and double exponential potential. These two classes of potentials comprise the asymptotic behaviour of several classes of scalar field potentials, and, therefore, they provide the skeleton for the typical behaviour of arbitrary potentials. Moreover, we analyse the linear cosmological perturbations in the matterless case by considering three scalar perturbations: the evolution of the Bardeen potentials, the comoving curvature perturbation, the so-called Sasaki-Mukhanov variable, or the scalar field perturbation in uniform curvature gauge. Finally, an exhaustive dynamical system analysis for each scalar perturbation is presented, including the evolution of Bardeen potentials in the presence of matter.