论文标题
自我相互作用中微子,哈勃参数张力和宇宙微波背景
Self-interacting neutrinos, the Hubble parameter tension, and the Cosmic Microwave Background
论文作者
论文摘要
我们对使用宇宙微波背景(CMB)和Baryon声学振荡数据对非标准中微子自我互动的宇宙学约束进行了全面研究。我们考虑了中微子自我互动的不同方案,这些中微子的自我互动是由中微子状态的分数所允许的,以及如何允许相对论能量密度n $ _ {\ textrm {eff}} $变化。具体来说,我们研究了:所有中微子状态自我相互作用和n $ _ {\ textrm {eff}} $变化的情况;我们表明的两个物种自由流对实验室的限制减轻了紧张,而其他相互作用状态中的能量也有所不同。以及中微子自我相互作用的可变分数与总n $ _ {\ textrm {eff}} $固定在标准模型值或允许变化的情况下。在任何情况下,我们都不会找到令人信服的证据证明新的中微子相互作用或n $ _ {\ textrm {eff}} $的非标准值。在某些情况下,我们发现在较低红移处发生中微子去耦的其他模式$ z _ {\ textrm {dec}}} \ sim 10^{3-4} $。我们进行了仔细的分析,以检查新的中微子自我互动是否解决或减轻所谓的$ h_0 $张力,并发现当所有Planck 2018 CMB温度和极化数据都没有,这些示例都没有比允许可变的n $ _ {\ textrm {\ textrm {freem {尽管我们专注于中微子相互作用,但这些约束适用于任何光遗物粒子。
We perform a comprehensive study of cosmological constraints on non-standard neutrino self-interactions using cosmic microwave background (CMB) and baryon acoustic oscillation data. We consider different scenarios for neutrino self-interactions distinguished by the fraction of neutrino states allowed to participate in self-interactions and how the relativistic energy density, N$_{\textrm{eff}}$, is allowed to vary. Specifically, we study cases in which: all neutrino states self-interact and N$_{\textrm{eff}}$ varies; two species free-stream, which we show alleviates tension with laboratory constraints, while the energy in the additional interacting states varies; and a variable fraction of neutrinos self-interact with either the total N$_{\textrm{eff}}$ fixed to the Standard Model value or allowed to vary. In no case do we find compelling evidence for new neutrino interactions or non-standard values of N$_{\textrm{eff}}$. In several cases we find additional modes with neutrino decoupling occurring at lower redshifts $z_{\textrm{dec}} \sim 10^{3-4}$. We do a careful analysis to examine whether new neutrino self-interactions solve or alleviate the so-called $H_0$ tension and find that, when all Planck 2018 CMB temperature and polarization data is included, none of these examples ease the tension more than allowing a variable N$_{\textrm{eff}}$ comprised of free-streaming particles. Although we focus on neutrino interactions, these constraints are applicable to any light relic particle.