论文标题

与宇宙学调查准确称重中微子

Accurately Weighing Neutrinos with Cosmological Surveys

论文作者

Xu, Weishuang Linda, DePorzio, Nicholas, Muñoz, Julian B., Dvorkin, Cora

论文摘要

一个有希望的途径衡量中微子的总质量,包括个人的质量,包括利用宇宙学数据集,例如宇宙微波背景和对宇宙大规模结构的调查。但是,为了获得中微子质量的无偏估计,应该包括许多影响。在这里,我们通过马尔可夫链蒙特卡洛的可能性分析进行预测,当添加到CMB-S4实验中时,通过两个星系调查进行测量:desi和{\ it {\ it euclid},对可以改变中性中微子量测量的两种效果敏感。首先是在固定的总质量下,每个中微子质量层次结构都会产生的物质波动的略有差异。第二个是由大量中微子产生的光环的生长诱导的规模依赖性偏置(GISDB)。我们发现,仅在$1σ$级别的总质量中,近距离调查可以区分层次结构;因此,尽管这些有望对中微子质量的总和进行测量,但在可预见的将来,它们不能显着辨别每个中微子的质量。我们进一步发现,忽略GISDB可导致对总中微子质量的$1σ$高估,并且我们通过红移依赖性偏见的参数化来展示如何吸收这种效果。

A promising avenue to measure the total, and potentially individual, mass of neutrinos consists of leveraging cosmological datasets, such as the cosmic microwave background and surveys of the large-scale structure of the universe. In order to obtain unbiased estimates of the neutrino mass, however, many effects ought to be included. Here we forecast, via a Markov Chain Monte Carlo likelihood analysis, whether measurements by two galaxy surveys: DESI and {\it Euclid}, when added to the CMB-S4 experiment, are sensitive to two effects that can alter neutrino-mass measurements. The first is the slight difference in the suppression of matter fluctuations that each neutrino-mass hierarchy generates, at fixed total mass. The second is the growth-induced scale-dependent bias (GISDB) of haloes produced by massive neutrinos. We find that near-future surveys can distinguish hierarchies with the same total mass only at the $1σ$ level; thus, while these are poised to deliver a measurement of the sum of neutrino masses, they cannot significantly discern the mass of each individual neutrino in the foreseeable future. We further find that neglecting the GISDB induces up to a $1σ$ overestimation of the total neutrino mass, and we show how to absorb this effect via a redshift-dependent parametrization of the scale-independent bias.

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