论文标题

多场通货膨胀和不对称$α$ - 提取器的预热

Multi-field inflation and preheating in asymmetric $α$-attractors

论文作者

Iarygina, Oksana, Sfakianakis, Evangelos I., Wang, Dong-Gang, Achúcarro, Ana

论文摘要

我们分析和比较在通货膨胀期间的多场动力学,并在$α$吸引者的对称和不对称模型中预热,其特征是双曲线空间歧管。我们表明,对于广泛的初始条件,普遍的(不对称)E-和(对称)T模型在通货膨胀期间表现出相同的两场动力学。可以在两个大约单场段中分解所得运动,并通过锋利的场空间连接。但是,预热的细节仍然不同。对于T模型,一个主要的质量尺度主导了观众场的波动的演变,而对于电子模型,由于电势从通货膨胀高原的陡峭程度而引起了竞争性的质量规模,从而导致小波浪和大型波浪群的参数共振产生了不同的贡献。我们对波动的线性多场分析表明,对于高度弯曲的歧管,E-和T模型几乎瞬间预热。对于无质量的田地,这始终是由于观众场的有效速旋扩增,因此单场结果不准确。有趣的是,有一个参数窗口对应于$ r = {\ cal o}(10^{ - 5})$和大量字段,其中预热行为在定性和定量上在对称和非对称电位上是不同的。在这种情况下,由于曲率值的曲率值的自我谐振,e模型可以完全预热,在曲率值中,在T模型中预热效率低下。这提供了在单场和多场级别上表现相同的模型之间的第一个区分功能。最后,我们讨论如何通过识别控制充气和观众波动的增长的相关质量尺度来描述双曲线歧管上的多场预热,这些量表可以应用于任何$α$ attractor的模型及以后。

We analyze and compare the multi-field dynamics during inflation and preheating in symmetric and asymmetric models of $α$-attractors, characterized by a hyperbolic field-space manifold. We show that the generalized (asymmetric) E- and (symmetric) T-models exhibit identical two-field dynamics during inflation for a wide range of initial conditions. The resulting motion can be decomposed in two approximately single-field segments connected by a sharp turn in field-space. The details of preheating can nevertheless be different. For the T-model one main mass-scale dominates the evolution of fluctuations of the spectator field, whereas for the E-model, a competing mass-scale emerges due to the steepness of the potential away from the inflationary plateau, leading to different contributions to parametric resonance for small and large wave-numbers. Our linear multi-field analysis of fluctuations indicates that for highly curved manifolds, both the E- and T-models preheat almost instantaneously. For massless fields this is always due to efficient tachyonic amplification of the spectator field, making single-field results inaccurate. Interestingly, there is a parameter window corresponding to $r={\cal O}(10^{-5})$ and massive fields, where the preheating behavior is qualitatively and quantitatively different for symmetric and asymmetric potentials. In that case, the E-model can completely preheat due to self-resonance for values of the curvature where preheating in the T-model is inefficient. This provides a first distinguishing feature between models that otherwise behave identically, both at the single-field and multi-field level. Finally, we discuss how one can describe multi-field preheating on a hyperbolic manifold by identifying the relevant mass-scales that control the growth of inflaton and spectator fluctuations, which can be applied to any $α$-attractor model and beyond.

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