论文标题

宇宙学引力波各向异性的新通用性能

New universal property of cosmological gravitational wave anisotropies

论文作者

Malhotra, Ameek, Dimastrogiovanni, Ema, Domènech, Guillem, Fasiello, Matteo, Tasinato, Gianmassimo

论文摘要

在宇宙进化的早期阶段产生的随机重力波背景的各向异性可以作为原始宇宙粒子含量的关键探针。我们指出了宇宙学起源的重力波各向异性的新普遍特性:对于绝热初始条件,它们的角度功率谱对宇宙流体的状态方程不敏感,以在大爆炸核合成之前推动扩张。从这种普遍行为的任何偏差都表明存在原始波动的非绝热来源。可以通过在频率范围内运行的重力波检测器对这种情况进行测试,该频率范围与CMB实验完全互补。在这项工作中,我们证明了这一总体结果,并说明了它对基于Curvaton方案的初始条件的代表性实现的后果。在最简单的库瓦顿设置的情况下,我们还发现引力波各向异性与CMB温度波动之间存在显着的互相关。相对于纯绝热场景有四倍的增强。我们讨论了我们发现对识别(宇宙学)引力波背景的起源的含义,而这种情况通常不能仅根据其光谱形状来确定。

The anisotropies of the stochastic gravitational wave background, as produced in the early phases of cosmological evolution, can act as a key probe of the primordial universe particle content. We point out a new universal property of gravitational wave anisotropies of cosmological origin: for adiabatic initial conditions, their angular power spectrum is insensitive to the equation of state of the cosmic fluid driving the expansion before big-bang nucleosynthesis. Any deviation from this universal behaviour points to the presence of non-adiabatic sources of primordial fluctuations. Such scenarios can be tested by gravitational wave detectors operating at a frequency range which is fully complementary to CMB experiments. In this work we prove this general result, and we illustrate its consequences for a representative realisation of initial conditions based on the curvaton scenario. In the case of the simplest curvaton setup, we also find a significant cross-correlation between gravitational wave anisotropies and the CMB temperature fluctuations. There is a fourfold enhancement vis-à-vis the purely adiabatic scenario. We discuss the implications of our findings for identifying the origin of the (cosmological) gravitational wave background when, as is often the case, this cannot be determined solely on the basis of its spectral shape.

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