论文标题
引导多场通货膨胀:重新审视光标量的非高斯
Bootstrapping Multi-Field Inflation: non-Gaussianities from light scalars revisited
论文作者
论文摘要
多场膨胀产生的原始非高斯是宇宙学观察的主要目标,因为长距离和短距离之间可能产生大的相关性。这些特征是由标量双光谱的局部形状捕获的。在本文中,我们将转换过程的非线性从额外的光标度标量转化为通货膨胀期间的曲率扰动。我们使用宇宙学启动程序作为主要的计算工具,为在任何运动学配置上有效的相关函数提供了分析模板。我们的结果包括以较小的声音和调解器的声音速度较小的形式破裂增压对称性。我们认为相关器来自来自无质量标量场的树级交换。通过引入延迟截止,我们确定相关器上的对称约束已修改。这导致了异常的保形病房的身份,因此,引导程序微分方程获得了取决于此截止的源术语。微分方程的解决方案是标量种子函数,结合了这些延迟时间的生长效应。将重量转移算子应用于辅助“种子”功能,我们获得了来自无质量交换的非高斯性形状的系统分类。对于具有Sitter对称性的理论,我们将产生的形状与通过$Δn$形式主义获得的形状进行比较,从而确定了从挤压极限的缺失贡献。对于突破性的场景,我们得出具有现象学上不同特征的新型形状函数。具体而言,新形状提供了等边非高斯性的简单扩展:信号峰在几何配置下由中介器和通电量的声速控制的几何配置峰。
Primordial non-Gaussianities from multi-field inflation are a leading target for cosmological observations, because of the possible large correlations generated between long and short distances. These signatures are captured by the local shape of the scalar bispectrum. In this paper, we revisit the nonlinearities of the conversion process from additional light scalars into curvature perturbations during inflation. We provide analytic templates for correlation functions valid at any kinematical configuration, using the cosmological bootstrap as a main computational tool. Our results include the possibility of large breaking of boost symmetry, in the form of small speeds of sound for both the inflaton and the mediators. We consider correlators coming from the tree-level exchange of a massless scalar field. By introducing a late-time cutoff, we identify that the symmetry constraints on the correlators are modified. This leads to anomalous conformal Ward identities, and consequently the bootstrap differential equations acquire a source term that depends on this cutoff. The solutions to the differential equations are scalar seed functions that incorporate these late-time growth effects. Applying weight-shifting operators to auxiliary "seed" functions, we obtain a systematic classification of shapes of non-Gaussianity coming from massless exchange. For theories with de Sitter symmetry, we compare the resulting shapes with the ones obtained via the $δN$ formalism, identifying missing contributions away from the squeezed limit. For boost-breaking scenarios, we derive a novel class of shape functions with phenomenologically distinct features. Specifically, the new shape provides a simple extension of equilateral non-Gaussianity: the signal peaks at a geometric configuration controlled by the ratio of the sound speeds of the mediator and the inflaton.