论文标题
早期宇宙中的非独立三中性抗体混合
Non-unitary three-neutrino mixing in the early Universe
论文作者
论文摘要
在标准模型以外的许多物理场景中,预计三中性抗体混合图的单位性偏差是可以预期的。将新的重中性瘦素与三个光中微子的混合原则上将修改带电 - 电流和中性流动与物质相互作用的强度和风味结构。因此,非非军事效应将对早期宇宙中的中微子解耦过程产生影响,以及有效中微子数量的价值,$ n _ {\ rm eff} $。我们用非单身中微子混合矩阵以辐射形式计算宇宙能量密度,以解决参数之间的可能相互作用。从即将到来的宇宙学观察中对$ n _ {\ rm eff} $的高度准确测量可以为离职性的出发提供独立和互补的限制。为了完整,我们将小偏差从单位性与非标准中微子相互作用相关联,并将预测的约束与文献中的其他现有限制进行比较。
Deviations from unitarity in the three-neutrino mixing canonical picture are expected in many physics scenarios beyond the Standard Model. The mixing of new heavy neutral leptons with the three light neutrinos would in principle modify the strength and flavour structure of charged-current and neutral-current interactions with matter. Non-unitarity effects would therefore have an impact on the neutrino decoupling processes in the early Universe and on the value of the effective number of neutrinos, $N_{\rm eff}$. We calculate the cosmological energy density in the form of radiation with a non-unitary neutrino mixing matrix, addressing the possible interplay between parameters. Highly accurate measurements of $N_{\rm eff}$ from forthcoming cosmological observations can provide independent and complementary limits on the departures from unitarity. For completeness, we relate the scenario of small deviations from unitarity to non-standard neutrino interactions and compare the forecasted constraints to other existing limits in the literature.