论文标题

原始功率光谱中普朗克规模特征的协变量预测

Covariant Predictions for Planck-Scale Features in Primordial Power Spectra

论文作者

Chatwin-Davies, Aidan, Kempf, Achim, Simidzija, Petar

论文摘要

在我们的字母(Arxiv:2208.10514)的同伴中,我们详细介绍了预测校正对原始标量和张量功率谱的全部细节,这些校正谱是由量子重力动机,自然的,协方差的紫外线截止的全部细节。我们通过协变限制原始相关器的路径积分中的字段来实现这些临界值,我们详细讨论了评估此类路径积分所需的功能分析技术。我们的预测是根据测量的宇宙学参数给出的,而不假设任何特定的通货膨胀潜力,是校正采用叠加在常规功率谱上的小振荡的形式。这些振荡的频率仅取决于截止量表的位置和第一个通货膨胀的慢速参数,而振幅和相位也对截止的平滑开启程度中等敏感。新预测的特异性为宇宙微波背景和大规模结构的观测值显着增强了实验灵敏度提供了机会。这可以用来将量子重力效应在量子场理论中变得重要的尺度上,甚至可以为量子重力效应提供积极的证据。

In this companion to our letter (arXiv:2208.10514), we elaborate the full details of the predicted corrections to the primordial scalar and tensor power spectra that arise from quantum gravity-motivated, natural, covariant ultraviolet cutoffs. We implement these cutoffs by covariantly restricting the fields which are summed over in the path integrals for the primordial correlators, and we discuss in detail the functional analytic techniques necessary for evaluating such path integrals. Our prediction, which is given in terms of measured cosmological parameters and without assuming any particular inflationary potential, is that the corrections take the form of small oscillations which are superimposed on the conventional power spectra. The frequency of these oscillations only depends on the location of the cutoff scale and the first inflationary slow-roll parameter, while the amplitude and phase are also moderately sensitive to how smoothly the cutoff turns on. The specificity of the new predictions offers an opportunity to significantly enhance experimental sensitivity in observations of the cosmic microwave background and large-scale structure. This may be used to place ever higher bounds on the scale at which quantum gravity effects become important in quantum field theory or may even provide positive evidence for quantum gravity effects.

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