论文标题
从相对论效应挤压的三分相关性中的非高斯性
Non-Gaussianity in the Squeezed Three-Point Correlation from the Relativistic Effects
论文作者
论文摘要
假设在单场通货膨胀方案中具有LCDM宇宙,我们计算了在挤压的三角形构型中观察到的物质密度波动的三分相关函数,这在扰动中考虑了所有相对效应。这种挤压的三点相关函数表征了局部类型的原始非高斯性非高斯性,并且在文献中已经广泛争议是否存在着在单场通货膨胀场景中大规模的星系聚类中存在着突出特征,要么是从原始起源或一般相关性中的内在非线性中出发的。首先,我们表明,由于空间仪表选择中的歧义性,对星系偏差的理论描述在一般相对论中是不完整的,而宇宙学可观察物的理论描述与空间仪表的选择无关。因此,需要对银河系偏差的适当相对论描述,以得出星系聚类的确定性结论。其次,我们证明了宇宙学可观察物的规范计算仍然不受额外的坐标转换(例如CFC或大型差异)(如扩张)的影响。最后,我们表明,观测值中与光传播相关的相对论效应相互抵消,因此没有从所谓的投影效应中贡献非高斯的贡献。
Assuming a LCDM universe in a single-field inflationary scenario, we compute the three-point correlation function of the observed matter density fluctuation in the squeezed triangular configuration, accounting for all the relativistic effects at the second order in perturbations. This squeezed three-point correlation function characterizes the local-type primordial non-Gaussianity, and it has been extensively debated in literature whether there exists a prominent feature in galaxy clustering on large scales in a single-field inflationary scenario either from the primordial origin or the intrinsic nonlinearity in general relativity. First, we show that theoretical descriptions of galaxy bias are incomplete in general relativity due to ambiguities in spatial gauge choice, while those of cosmological observables are independent of spatial gauge choice. Hence a proper relativistic description of galaxy bias is needed to reach a definitive conclusion in galaxy clustering. Second, we demonstrate that the gauge-invariant calculations of the cosmological observables remain unaffected by extra coordinate transformations like CFC or large diffeomorphism like dilatation. Finally, we show that the relativistic effects associated with light propagation in observations cancel each other, and hence there exists NO non-Gaussian contribution from the so-called projection effects.