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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >On the degeneracy between baryon feedback and massive neutrinos as probed by matter clustering and weak lensing
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On the degeneracy between baryon feedback and massive neutrinos as probed by matter clustering and weak lensing

机译:以物质聚类和弱透镜探测的重孔反馈和大规模中微子的退化关系

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摘要

Massive neutrinos, due to their free streaming, produce a suppression in the matter power spectrum at intermediate and small scales which could be probed by galaxy clustering and/or weak lensing observables. This effect happens at scales that are also influenced by baryon feedback, i.e. galactic winds or Active Galactic Nuclei (AGN) feedback, which in realistic hydrodynamic simulations has also been shown to produce a suppression of power. Leaving aside, for the moment, the complex issue of galaxy bias, we focus here on matter clustering and tomographic weak lensing, we investigate the possible degeneracy between baryon feedback and neutrinos showing that it is not likely to degrade significantly the measurement of neutrino mass in future surveys. To do so, we generate mock data sets and fit them using the Markov Chain Monte Carlo (MCMC) technique and explore degeneracies between feedback parameters and neutrino mass. We model baryon feedback through fitting functions, while massive neutrinos are accounted for, also in the non-linear regime, using Halofit calibrated against accurate N-body neutrino simulations. In the error budget, we include the uncertainty in the modelling of non-linearities. For both matter clustering and weak lensing, we always recover the input neutrino mass within ~ 0.25σ confidence level. Finally, we also take into account the intrinsic alignment effect in the weak lensing mock data. Even in this case, we are able to recover the right parameters: in particular, we find a significant degeneracy pattern between M ν and the intrinsic alignment parameter A IA .
机译:由于它们的自由流动,因此在中间和小尺度的物质功率谱中产生抑制,这可以通过星系聚类和/或弱镜头可观察来探测。这种效果发生在尺度上,该效果也受到Baryon反馈的影响,即银河风或活性银核(AGN)反馈,其在现实的流体动力学模拟中也已经显示出产生抑制力。撇开,暂时,无论是银河系的复杂问题,我们在这里专注于物质聚类和断层摄影弱镜头,我们调查了Baryon反馈和中微子之间可能的退化,表明它不太可能显着降解中微子块的测量未来调查。为此,我们使用Markov链蒙特卡罗(MCMC)技术生成模拟数据集并符合它们,并探索反馈参数和中微子质量之间的退化性。我们通过拟合功能模拟Baryon反馈,而使用卤素仪校准的非线性制度,占据了巨大的NueLime的核心的反馈。在错误预算中,我们在非线性建模中包含不确定性。对于所有物质聚类和弱镜头,我们始终在〜0.25σ置信水平内恢复输入的中微子质量。最后,我们还考虑到弱镜头模拟数据中的内在对齐效果。即使在这种情况下,我们也能够恢复正确的参数:特别是,我们在Mν和内在对准参数A IA之间找到了显着的退化模式。

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