通过无中微子双β衰变限制无菌中微子

Sudip Jana, Lucas Puetter, Alexei Yu. Smirnov
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摘要

我们完善并更新了来自$0\nu \beta \beta$ 衰变的eV和更高尺度不育中微子的参数边界。我们为$\Delta m^2_{41} 中的约束提出了一个简单紧凑的解析表达式。- sin^22\theta_{14}$平面上的约束,其中包括所有相关参数。我们详细研究了边界对未知CP相位和轻中微子质量谱类型(质量排序和退化程度)的依赖关系。我们利用 KamLAND-Zen 最新、最严格的数据计算了边界。我们还估算了未来实验的预测约束。所得到的边界与立体中微子存在的积极迹象以及其他现有的边界相对抗。0 \nu \beta \beta$ 衰变结果排除了 BEST 和中微子-4 所暗示的参数区域,而 LSND 和 MiniBooNE 所指示的区域与结合了 $\nu_\mu-$ 消失边界的 0 \nu \beta \beta$ 结果相冲突。
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Restricting Sterile Neutrinos by Neutrinoless Double Beta Decay
The bounds on parameters of the eV and higher scale sterile neutrinos from the $0\nu \beta \beta$ decay have been refined and updated. We present a simple and compact analytic expression for the bound in the $\Delta m^2_{41} - \sin^2 2\theta_{14}$ plane, which includes all relevant parameters. Dependencies of the bound on unknown CP-phases and the type of mass spectrum of light neutrinos (mass ordering and level of degeneracy) are studied in detail. We have computed the bounds using the latest and most stringent data from KamLAND-Zen. The projected constraints from future experiments are estimated. The obtained bounds are confronted with positive indications of the presence of sterile neutrinos as well as with the other existing bounds. The $0\nu \beta \beta$ decay results exclude the regions of parameters implied by BEST and Neutrino-4, and the regions indicated by LSND and MiniBooNE are in conflict with $0\nu \beta \beta$ results combined with $\nu_\mu-$ disappearance bounds.
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