论文标题
使用标记的功率谱检测大规模结构中中微子的特征
Using the Marked Power Spectrum to Detect the Signature of Neutrinos in Large-Scale Structure
论文作者
论文摘要
宇宙中微子在空隙中具有最大的影响:这些是中微子与暗物质密度比最高的区域。明显的功率谱可用于强调高密度区域上的低密度区域,因此可能比功率谱对中微子质量的影响更敏感。使用Quijote Suite的22,000个N体模拟,我们量化了物质字段标记的功率谱中的信息内容,并表明它通过设置所有宇宙学参数大于2的因素来优于标准功率谱。标记和标准功率谱的组合允许在中微子质量的最小总和上放置4.3σ约束,其体积等于1(gpc/h)^3,而没有CMB先验。不同标记功率光谱的组合在相同条件下产生6σ约束。
Cosmological neutrinos have their greatest influence in voids: these are the regions with the highest neutrino to dark matter density ratios. The marked power spectrum can be used to emphasize low density regions over high density regions, and therefore is potentially much more sensitive than the power spectrum to the effects of neutrino masses. Using 22,000 N-body simulations from the Quijote suite, we quantify the information content in the marked power spectrum of the matter field, and show that it outperforms the standard power spectrum by setting constraints improved by a factor larger than 2 on all cosmological parameters. The combination of marked and standard power spectrum allows to place a 4.3σ constraint on the minimum sum of the neutrino masses with a volume equal to 1 (Gpc/h)^3 and without CMB priors. Combinations of different marked power spectra yield a 6σ constraint within the same conditions.