Department of physics, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
PLoS One. 2018 May 24;13(5):e0197735. doi: 10.1371/journal.pone.0197735. eCollection 2018.
We study scale dependence of the cosmic microwave background (CMB) power spectrum in a class of small, single-field models of inflation which lead to a high value of the tensor to scalar ratio. The inflaton potentials that we consider are degree 5 polynomials, for which we precisely calculate the power spectrum, and extract the cosmological parameters: the scalar index ns, the running of the scalar index nrun and the tensor to scalar ratio r. We find that for non-vanishing nrun and for r as small as r = 0.001, the precisely calculated values of ns and nrun deviate significantly from what the standard analytic treatment predicts. We study in detail, and discuss the probable reasons for such deviations. As such, all previously considered models (of this kind) are based upon inaccurate assumptions. We scan the possible values of potential parameters for which the cosmological parameters are within the allowed range by observations. The 5 parameter class is able to reproduce all of the allowed values of ns and nrun for values of r that are as high as 0.001. Subsequently this study at once refutes previous such models built using the analytical Stewart-Lyth term, and revives the small field brand, by building models that do yield an appreciable r while conforming to known CMB observables.
我们研究了一类小单场模型中的宇宙微波背景(CMB)功率谱的标度依赖性,这些模型导致张量与标量比的值很高。我们考虑的暴涨子势是五次多项式,我们精确地计算了功率谱,并提取了宇宙学参数:标量指数 ns、标量指数的斜率 nrun 和张量与标量比 r。我们发现,对于非零的 nrun 和 r 小到 r = 0.001,精确计算的 ns 和 nrun 值与标准解析处理预测的值有很大的偏差。我们详细研究并讨论了这种偏差的可能原因。因此,以前考虑的所有模型(这种类型的)都是基于不准确的假设。我们扫描了潜在参数的可能值,这些参数的宇宙学参数在观测允许的范围内。5 参数类能够再现所有允许的 ns 和 nrun 值,对于 r 值高达 0.001。随后,这项研究立即反驳了以前使用分析 Stewart-Lyth 项构建的此类模型,并通过构建符合已知 CMB 观测结果的模型来恢复小场模型,这些模型确实产生了可观的 r。