论文标题

MEV尺度加热温度和光无菌中微子的宇宙生产

MeV-scale reheating temperature and cosmological production of light sterile neutrinos

论文作者

Hasegawa, Takuya, Hiroshima, Nagisa, Kohri, Kazunori, Hansen, Rasmus S. L., Tram, Thomas, Hannestad, Steen

论文摘要

我们研究了无菌中微子如何影响MEV尺度加热温度方案的宇宙学。通过通过早期宇宙中的混合和散射的结合来计算无菌中微子的产生,我们发现轻的无菌中微子,从短基线中微子中微子振荡实验中推断出的质量和混合物,与大爆核合成(BBN)和宇宙Microwave(CMB)hadiiwation cal的温度相一致。 o}(1)$ MEV如果负责再加热腐烂到电磁成分(辐射衰减)的母体粒子。相比之下,如果父粒子主要腐烂成雄激素(hadronic腐烂),则BBN的绑定变得更加严格。在这种情况下,可以从宇宙学上排除光无菌中微子的存在,具体取决于父粒子的质量和耐达的分支比。

We investigate how sterile neutrinos with a range of masses influence cosmology in MeV-scale reheating temperature scenarios. By computing the production of sterile neutrinos through the combination of mixing and scattering in the early Universe, we find that light sterile neutrinos, with masses and mixings as inferred from short-baseline neutrino oscillation experiments, are consistent with big-bang nucleosynthesis (BBN) and cosmic microwave background (CMB) radiation for the reheating temperature of ${\cal O}(1)$ MeV if the parent particle responsible for reheating decays into electromagnetic components (radiative decay). In contrast, if the parent particle mainly decays into hadrons (hadronic decay), the bound from BBN becomes more stringent. In this case, the existence of the light sterile neutrinos can be cosmologically excluded, depending on the mass and the hadronic branching ratio of the parent particle.

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