论文标题
带有弥漫性超新星背景中微子的基本物理学
Fundamental physics with the diffuse supernova background neutrinos
论文作者
论文摘要
宇宙充斥着所有过去核心爆发超新星的所有物种中的数十个中微子。这些从未被观察到,但是这种情况将在不久的将来发生变化。在不到十年的时间里,装有gadolinium的超级卡米卡德实验预计将收集来自中微子散射从弥漫性超新星中微子背景(DSNB)引起的数十种事件。预计包括Hyper-Kamiokande和Theia在内的下一代项目有望在经过十年的运行后收集数百个DSNB事件的数据样本。在这里,我们定量研究了DSNB(包括其能量谱)的好方面,将通过不同的电流或即将到来的大型中微子探测器来测量。我们分析了模拟数据,以估计DSNB的测量效果如何用于宇宙学的研究主题 - 包括哈勃参数的测量 - 天体物理学 - 包括星形形成率和粒子物理学 - 包括中性中微子的生命周期以及中微子的可能性,以及中性中间源是Pseudo-dirac-dirac fermions。
The Universe is awash with tens-of-MeV neutrinos of all species coming from all past core-collapse supernovae. These have never been observed, but this state of affairs will change in the near future. In the less than ten years, the Super-Kamiokande experiment, loaded with gadolinium, is expected to collect dozens of events induced by the scattering of neutrinos from the diffuse supernova neutrino background (DSNB). Next-generation projects, including Hyper-Kamiokande and Theia, are expected to collect data samples with hundreds of DSNB events after a decade of running. Here, we study quantitatively how well the DSNB, including its energy spectrum, will be measured by different current or upcoming large neutrino detectors. We analyze the simulated data in order to estimate how well measurements of the DSNB can be used to inform research topics in cosmology -- including measurements of the Hubble parameter -- astrophysics -- including the star-formation-rate -- and particle physics -- including the neutrino lifetime and the possibility that neutrinos are pseudo-Dirac fermions.