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Evolution of cosmological perturbations in the universe dominated by resonant scalar fields

机译:共振标量场主导的宇宙宇宙扰动的演化

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Recently a Hamiltonian formulation for the evolution of the universe dominated by multiple oscillatory scalar fields was developed by the present author and was applied to the investigation of the evolution of cosmological perturbations on superhorizon scales in the case that scalar fields have incommensurable masses.In the present paper, the analysis is extended to the case in which the masses of scalar fields satisfy resonance conditions approximately. In this case, the action-angle variables for the system can be classified into fast changing variables and slowly changing variables. We show that after an appropriate canonical transformation, the part of the Hamiltonian that depends on the fast changing angle variables can be made negligibly small, so that the dynamics of the system can be effectively determined by a truncated Hamiltonian that describes a closed dynamics of the slowly changing variables. Utilizing this formulation, we show that the system is unstable if this truncated Hamiltonian system has hyperbolic fixed point and as a consequence, the Bardeen parameter for a perturbation of the system grows. (C) 2004 Elsevier B.V. All rights reserved.
机译:最近,本作者开发了一种针对由多个振荡标量场控制的宇宙演化的哈密顿公式,并将其用于研究标量场具有不可估量质量的情况下超水平尺度上的宇宙学扰动的演化。在本文中,分析扩展到标量场的质量近似满足共振条件的情况。在这种情况下,系统的作用角变量可以分为快速变化的变量和缓慢变化的变量。我们表明,经过适当的规范变换后,依赖于快速变化的角度变量的哈密顿量的部分可以忽略不计,从而可以通过描述哈密顿量的闭合动力学的截断的哈密顿量有效地确定系统的动力学。缓慢变化的变量。利用该公式,我们表明,如果该截断的哈密顿系统具有双曲不动点,则该系统是不稳定的,因此,扰动该系统的Bardeen参数将增大。 (C)2004 Elsevier B.V.保留所有权利。

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