论文标题

相对论效应对类星体大规模聚类中原始非高斯标志的影响

Impact of Relativistic Effects on the Primordial Non-Gaussianity Signature in the Large-Scale Clustering of Quasars

论文作者

Wang, Mike Shengbo, Beutler, Florian, Bacon, David

论文摘要

已经证明,相对论的效应在大尺度上引入了对银河系过度密度场的规模依赖性校正,这可能会妨碍通过比例依赖性的halo偏置,从而阻碍了原始非高斯$ f_ \ textrm {nl} $的检测。相对论校正的幅度不仅取决于宇宙学背景的扩展,还取决于对示踪剂种群的光度阈值的敏感性和敏感性,如进化偏见$ b_ \ b_ \ textrm {e} $和放大率偏见偏见bias $ s $所见。在这项工作中,我们将亮度函数函数测量从扩展的baryon振荡镜头调查(EBOSS)到$ b_ \ textrm {e} $和$ s $,以及$ s $ and $ s $,从而为QUA(QSO)样本提供了对电力型多数的相对论校正的限制。尽管可以通过调整所考虑的示踪剂样本的红移范围或亮度阈值来减轻对$ f_ \ textrm {nl} $签名的影响,但我们建议,对于将来的调查,应从示踪剂的效果函数(包括其无效功能)中探索大型宇宙量的调查,应从相对论校正中进行模型。这对于在即将进行的调查中的量表上的类星体聚类测量很重要\ Lessim 1 $,并与$ f_ \ textrm {nl} \ simeq 1 $在Redshifts $ z \ gtrsim 2.5 $中的Power Spectrum Quadrupole中相媲美。

Relativistic effects in clustering observations have been shown to introduce scale-dependent corrections to the galaxy over-density field on large scales, which may hamper the detection of primordial non-Gaussianity $f_\textrm{NL}$ through the scale-dependent halo bias. The amplitude of relativistic corrections depends not only on the cosmological background expansion, but also on the redshift evolution and sensitivity to the luminosity threshold of the tracer population being examined, as parametrised by the evolution bias $b_\textrm{e}$ and magnification bias $s$. In this work, we propagate luminosity function measurements from the extended Baryon Oscillation Spectroscopic Survey (eBOSS) to $b_\textrm{e}$ and $s$ for the quasar (QSO) sample, and thereby derive constraints on relativistic corrections to its power spectrum multipoles. Although one could mitigate the impact on the $f_\textrm{NL}$ signature by adjusting the redshift range or the luminosity threshold of the tracer sample being considered, we suggest that, for future surveys probing large cosmic volumes, relativistic corrections should be forward modelled from the tracer luminosity function including its uncertainties. This will be important to quasar clustering measurements on scales $k \sim 10^{-3} h \, \textrm{Mpc}^{-1}$ in upcoming surveys such as the Dark Energy Spectroscopic Instrument (DESI), where relativistic corrections can overwhelm the expected $f_\textrm{NL}$ signature at low redshifts $z \lesssim 1$ and become comparable to $f_\textrm{NL} \simeq 1$ in the power spectrum quadrupole at redshifts $z \gtrsim 2.5$.

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