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Robustness of cosmic neutrino background detection in the cosmic microwave background

机译:宇宙微波背景下宇宙中微子背景检测的鲁棒性

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The existence of a cosmic neutrino background can be probed indirectly by CMB experiments, not only by measuring the background density of radiation in the universe, but also by searching for the typical signatures of the fluctuations of free-streaming species in the temperature and polarisation power spectrum. Previous studies have already proposed a rather generic parametrisation of these fluctuations, that could help to discriminate between the signature of ordinary free-streaming neutrinos, or of more exotic dark radiation models. Current data are compatible with standard values of these parameters, which seems to bring further evidence for the existence of a cosmic neutrino background. In this work, we investigate the robustness of this conclusion under various assumptions. We generalise the definition of an effective sound speed and viscosity speed to the case of massive neutrinos or other dark radiation components experiencing a non-relativistic transition. We show that current bounds on these effective parameters do not vary significantly when considering an arbitrary value of the particle mass, or extended cosmological models with a free effective neutrino number, dynamical dark energy or a running of the primordial spectrum tilt. We conclude that it is possible to make a robust statement about the detection of the cosmic neutrino background by CMB experiments.
机译:可以通过CMB实验间接探测宇宙中微子背景的存在,不仅可以通过测量宇宙中辐射的背景密度,还可以通过搜索自由流物种在温度和极化功率上的波动的典型特征来进行。光谱。先前的研究已经提出了对这些波动的相当通用的参数化设置,这可以帮助区分普通的自由流动中微子或更奇特的暗辐射模型的特征。当前数据与这些参数的标准值兼容,这似乎为宇宙中微子背景的存在提供了进一步的证据。在这项工作中,我们研究了在各种假设下该结论的稳健性。我们将有效声速和粘滞速度的定义推广到发生中性微子或其他暗辐射分量经历相对论过渡的情况。我们显示,当考虑任意质量的粒子质量或具有自由有效中微子数,动态暗能量或原始光谱倾斜度的扩展宇宙学模型时,这些有效参数上的当前界限不会显着变化。我们得出结论,有可能对CMB实验对宇宙中微子背景的检测做出可靠的陈述。

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