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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Cosmological axion and neutrino mass constraints from Planck 2015 temperature and polarization data
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Cosmological axion and neutrino mass constraints from Planck 2015 temperature and polarization data

机译:来自普朗克2015年温度和极化数据的宇宙轴力和中微子质量约束

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摘要

Axions currently provide the most compelling solution to the strong CP problem. These particles may be copiously produced in the early universe, including via thermal processes. Therefore, relic axions constitute a hot dark matter component and their masses are strongly degenerate with those of the three active neutrinos, as they leave identical signatures in the different cosmological observables. In addition, thermal axions, while still relativistic states, also contribute to the relativistic degrees of freedom, parameterized via N-eff. We present the cosmological bounds on the relic axion and neutrino masses, exploiting the full Planck mission data, which include polarization measurements. In the mixed hot dark matter scenario explored here, we find the tightest and more robust constraint to date on the sum of the three active neutrino masses, Sigma m nu < 0.136eV at 95% CL, as it is obtained in the very well-known linear perturbation regime. The Planck Sunyaev-Zeldovich cluster number count data further tightens this bound, providing a 95% CL upper limit of Sigma m nu < 0.126 eV in this very same mixed hot dark matter model, a value which is very close to the expectations in the inverted hierarchical neutrino mass scenario. Using this same combination of data sets we find the most stringent bound to date on the thermal axion mass, m(a) < 0.529 eV at 95% CL. (C) 2015 The Authors. Published by Elsevier B.V.
机译:当前,Axions为解决强CP问题提供了最引人注目的解决方案。这些粒子可能在早期宇宙中大量产生,包括通过热过程产生。因此,遗物轴构成了一个热的暗物质成分,其质量与三个活跃中微子的质量强烈退化,因为它们在不同的宇宙学观测物中留下了相同的特征。此外,热轴虽然仍处于相对论状态,但也有助于相对论自由度(通过N-eff进行参数化)。我们利用完整的普朗克任务数据(包括极化测量),展示了遗物轴突和中微子质量的宇宙学界限。在这里探索的混合热暗物质情景中,我们发现,迄今为止,三个活跃的中微子质量之和(在95%CL时的Sigma m nu <0.136eV)之和是最严格,更鲁棒的约束,因为它是在非常好的条件下获得的。已知的线性摄动状态。普朗克Sunyaev-Zeldovich簇数计数数据进一步收紧了这个界限,在这个非常相似的混合热暗物质模型中,提供了Sigma m nu <0.126 eV的95%CL上限,该值非常接近倒相中的期望值。分级中微子质量情景。使用相同的数据集组合,我们发现迄今为止热轴质量最严格的约束是在95%CL时m(a)<0.529 eV。 (C)2015作者。由Elsevier B.V.发布

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