Palma Gonzalo A, Sypsas Spyros, Zenteno Cristobal
Grupo de Cosmología y Astrofísica Teórica, Departamento de Física, FCFM, Universidad de Chile, Blanco Encalada 2008, Santiago, Chile.
Department of Physics, Faculty of Science, Chulalongkorn University, Phayathai Road, Bangkok 10330, Thailand.
Phys Rev Lett. 2020 Sep 18;125(12):121301. doi: 10.1103/PhysRevLett.125.121301.
The inflationary origin of primordial black holes (PBHs) relies on a large enhancement of the power spectrum Δ_{ζ} of the curvature fluctuation ζ at wavelengths much shorter than those of the cosmic microwave background anisotropies. This is typically achieved in models where ζ evolves without interacting significantly with additional (isocurvature) scalar degrees of freedom. However, quantum gravity inspired models are characterized by moduli spaces with highly curved geometries and a large number of scalar fields that could vigorously interact with ζ (as in the cosmological collider picture). Here we show that isocurvature fluctuations can mix with ζ inducing large enhancements of its amplitude. This occurs whenever the inflationary trajectory experiences rapid turns in the field space of the model leading to amplifications that are exponentially sensitive to the total angle swept by the turn, which induce characteristic observable signatures on Δ_{ζ}. We derive accurate analytical predictions and show that the large enhancements required for PBHs demand noncanonical kinetic terms in the action of the multifield system.
原初黑洞(PBHs)的暴胀起源依赖于曲率涨落ζ的功率谱Δ₍ζ₎在比宇宙微波背景各向异性波长短得多的波长处大幅增强。这通常在ζ演化时不与额外(等曲率)标量自由度显著相互作用的模型中实现。然而,受量子引力启发的模型的特征是具有高度弯曲几何形状的模空间和大量可能与ζ强烈相互作用的标量场(如在宇宙学对撞机图景中)。在此我们表明,等曲率涨落可与ζ混合,导致其振幅大幅增强。只要暴胀轨迹在模型的场空间中经历快速转向,就会发生这种情况,这会导致放大效应,对转向扫过的总角度呈指数敏感,从而在Δ₍ζ₎上产生特征性可观测特征。我们推导了精确的解析预测,并表明PBHs所需的大幅增强要求多场系统的作用量中有非规范动能项。