首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Nonlinear perturbations from the coupling of the inflaton to a non-Abelian gauge field, with a focus on Chromo-Natural Inflation
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Nonlinear perturbations from the coupling of the inflaton to a non-Abelian gauge field, with a focus on Chromo-Natural Inflation

机译:非线性扰动从涌入到非阿比越画领域的耦合,重点是铬自然通胀

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摘要

Several models of inflation employing a triplet of SU(2) vectors with spatially orthogonal vacuum expectation values (VEVs) have been recently proposed. One (tensor) combination t of the vector modes is amplified in some momentum range during inflation. Due to the vector VEVs, this combination mixes with gravitational waves (GW) at the linear level, resulting in a GW amplification that has been well studied in the literature. Scalar perturbations in this class of models have been so far studied only at the linear level. We perform a first step toward the nonlinear computation using as an example the original model of Chromo-Natural Inflation. We compute the contribution to the scalar power spectrum arising from the coupling of the combination t to the inflaton. This contribution is mostly controlled by a single parameter of the model (namely, the ratio between the mass of the fluctuations of the vector field and the Hubble rate), and, for a wide range of this parameter, it can significantly affect the phenomenology obtained from the linear theory. This nonlinear contribution is significantly blue, improving the comparison between the two-point function and the Cosmic Microwave Background (CMB) data. This growth can be also relevant for smaller scale phenomenology, such as large scale structure, CMB distortions, and primordial black holes.
机译:最近提出了几种使用具有空间正交的真空预期值(VEV)的Su(2)载体三胞胎的次型膨胀模型。在膨胀期间的一些动量范围内扩增载体模式的一个(张量)组合T。由于矢量VEVS,这种组合在线性水平的引力波(GW)混合,导致在文献中进行了很好地研究的GW扩增。到目前为止,已经在线性水平研究了这类模型中的标量扰动。我们使用作为铬自然通胀的原始模型来执行朝向非线性计算的第一步。我们将由组合T与发射器的耦合产生的标量功率谱的贡献计算。该贡献主要由模型的单个参数控制(即,载体场的波动的质量与哈勃速率之间的比率),并且对于该参数的宽范围,它可以显着影响获得的现象学从线性理论。这种非线性贡献是显着的蓝色,从而改善了两点函数和宇宙微波背景(CMB)数据之间的比较。这种增长也可以与较小的尺度现象学相关,例如大规模结构,CMB扭曲和原始黑洞。

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