论文标题
SPT-3G 2018 TT/TE/EE数据集的CMB温度功率谱和对宇宙学的限制的测量
A Measurement of the CMB Temperature Power Spectrum and Constraints on Cosmology from the SPT-3G 2018 TT/TE/EE Data Set
论文作者
论文摘要
我们使用$ \ sim \! 1500 \,\ mathrm {deg}^2 $ spt-3g在2018年制造的字段。我们报告了95、150和220GHz的多频功率谱测量,覆盖了Angular Multipole范围$ 750 \ leq \ leq \ leq \ ell <3000 $。我们将此$ TT $测量与已发布的两极分化功率谱测量相结合,从2018年观察季节开始,并更新其相关的协方差矩阵,以完成SPT-3G 2018 $ TT/TE/TE/EE $数据集。这是共同介绍SPT $ TT $,$ TE $和$ EE $ Power Spectrum测量的首次分析。我们盲目宇宙学结果,并将数据集对功率谱和参数级别进行一系列一致性测试。我们发现频率和频谱类型之间的一致性很高,我们的结果对天体物理前景的建模具有鲁棒性。我们报告$λ$ CDM的结果和一系列扩展,利用以下参数:重力透镜对初级功率谱的效果的幅度$ a_ \ mathrm {l} $,有效的中性物种$ n _ _ {\ mathrm {eff}} $,primordial helium heluim heluim heluim heluim heluim heluim helum helum heluim heluim helum y y _ { BARYON结块因子因原始磁场而引起的$ B $。我们发现SPT-3G 2018 $ T/TE/EE $数据非常适合$λ$ CDM,概率超过$ 15 \%$。对于$λ$ CDM,我们将现在的扩展速率限制为$ H_0 = 68.3 \ pm 1.5 \,\ Mathrm {km \,s^{ - 1} \,mpc^{ - 1}} $,组合结构增长参数至$ s_8 = 0.797 = 0.797 \ pm 0.0042 $。基于SPT的结果有效地独立于Planck,并且两个数据集中的宇宙参数约束彼此之间的$ <1 \,σ$之内。 (简略)
We present a sample-variance-limited measurement of the temperature power spectrum ($TT$) of the cosmic microwave background (CMB) using observations of a $\sim\! 1500 \,\mathrm{deg}^2$ field made by SPT-3G in 2018. We report multifrequency power spectrum measurements at 95, 150, and 220GHz covering the angular multipole range $750 \leq \ell < 3000$. We combine this $TT$ measurement with the published polarization power spectrum measurements from the 2018 observing season and update their associated covariance matrix to complete the SPT-3G 2018 $TT/TE/EE$ data set. This is the first analysis to present cosmological constraints from SPT $TT$, $TE$, and $EE$ power spectrum measurements jointly. We blind the cosmological results and subject the data set to a series of consistency tests at the power spectrum and parameter level. We find excellent agreement between frequencies and spectrum types and our results are robust to the modeling of astrophysical foregrounds. We report results for $Λ$CDM and a series of extensions, drawing on the following parameters: the amplitude of the gravitational lensing effect on primary power spectra $A_\mathrm{L}$, the effective number of neutrino species $N_{\mathrm{eff}}$, the primordial helium abundance $Y_{\mathrm{P}}$, and the baryon clumping factor due to primordial magnetic fields $b$. We find that the SPT-3G 2018 $T/TE/EE$ data are well fit by $Λ$CDM with a probability-to-exceed of $15\%$. For $Λ$CDM, we constrain the expansion rate today to $H_0 = 68.3 \pm 1.5\,\mathrm{km\,s^{-1}\,Mpc^{-1}}$ and the combined structure growth parameter to $S_8 = 0.797 \pm 0.042$. The SPT-based results are effectively independent of Planck, and the cosmological parameter constraints from either data set are within $<1\,σ$ of each other. (abridged)