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宇宙微波背景和引力透镜观测到的大量中微子证据。

Evidence for massive neutrinos from cosmic microwave background and lensing observations.

机构信息

Jodrell Bank Centre for Astrophysics, School of Physics and Astronomy, University of Manchester, Manchester M13 9PL, United Kingdom.

Centre for Astronomy & Particle Theory, University of Nottingham, University Park, Nottingham NG7 2RD, United Kingdom.

出版信息

Phys Rev Lett. 2014 Feb 7;112(5):051303. doi: 10.1103/PhysRevLett.112.051303. Epub 2014 Feb 6.

Abstract

We discuss whether massive neutrinos (either active or sterile) can reconcile some of the tensions within cosmological data that have been brought into focus by the recently released Planck data. We point out that a discrepancy is present when comparing the primary CMB and lensing measurements both from the CMB and galaxy lensing data using CFHTLenS, similar to that which arises when comparing CMB measurements and SZ cluster counts. A consistent picture emerges and including a prior for the cluster constraints and BAOs we find that for an active neutrino model with three degenerate neutrinos, ∑m(ν)=(0.320±0.081)  eV, whereas for a sterile neutrino, in addition to 3 neutrinos with a standard hierarchy and ∑m(ν)=0.06  eV, m(ν,sterile)(eff)=(0.450±0.124)  eV and ΔN(eff)=0.45±0.23. In both cases there is a significant detection of modification to the neutrino sector from the standard model and in the case of the sterile neutrino it is possible to reconcile the BAO and local H0 measurements. However, a caveat to our result is some internal tension between the CMB and lensing and cluster observations, and the masses are in excess of those estimated from the shape of the matter power spectrum from galaxy surveys.

摘要

我们讨论了大量中微子(无论是活性的还是惰性的)是否可以调和宇宙学数据中一些由于普朗克数据的发布而引起关注的紧张关系。我们指出,在用 CFHTLenS 比较来自宇宙微波背景和星系引力透镜数据的主要宇宙微波背景和引力透镜测量时,会出现差异,这与比较宇宙微波背景测量和 SZ 星系团计数时出现的差异类似。当包括对星系团约束的先验和 BAO 时,我们发现对于具有三个简并中微子的活性中微子模型,∑m(ν)=(0.320±0.081)eV,而对于惰性中微子,除了具有标准层次结构的 3 个中微子和∑m(ν)=0.06eV 之外,m(ν,sterile)(eff)=(0.450±0.124)eV 和 ΔN(eff)=0.45±0.23。在这两种情况下,从中微子标准模型的角度来看,对中微子部分的修正都有明显的探测,对于惰性中微子,有可能调和 BAO 和本地 H0 测量。然而,我们的结果存在一个警告,即宇宙微波背景和引力透镜以及星系团观测之间存在一些内部紧张关系,并且质量超过了从星系调查的物质功率谱形状估计的值。

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