Constraining matter bounce scenario from scalar-induced vector perturbations

Mian Zhu, Chao Chen
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Abstract

Bouncing cosmologies, while offering a compelling alternative to inflationary models, face challenges from the growth of vector perturbations during the contracting phase. While linear vector instabilities can be avoided with specific initial conditions or the absence of vector degrees of freedom, we demonstrate the significant role of secondary vector perturbations generated by non-linear interactions with scalar fluctuations. Our analysis reveals that in a broad class of single-field matter bounce scenarios, these secondary vector perturbations inevitably get unacceptably large amplitudes, provided the curvature fluctuations are consistent with cosmic microwave background observations. This finding underscores the crucial importance of scalar-induced vector perturbations in bouncing cosmology and highlights the need for further investigation into their potential impact on the viability of these models.
从标量诱发的矢量扰动制约物质反弹情景
反弹宇宙学虽然为通货膨胀模型提供了一个令人信服的替代方案,但在收缩阶段面临着矢量扰动增长的挑战。虽然线性矢量不稳定性可以通过特定的初始条件或不存在矢量自由度来避免,但我们证明了与标量波动的非线性相互作用所产生的次级矢量扰动的重要作用。我们的分析表明,只要曲率波动与宇宙微波背景观测结果一致,在一大类单场物质反弹情景中,这些次级矢量扰动不可避免地会获得令人无法接受的大振幅。这一发现强调了标量诱导的矢量扰动在反弹宇宙学中的关键重要性,并突出了进一步研究它们对这些模型可行性的潜在影响的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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