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首页> 外文期刊>Advances in high energy physics >Effects of Leptonic Nonunitarity on Lepton Flavor Violation, Neutrino Oscillation, Leptogenesis, and Lightest Neutrino Mass
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Effects of Leptonic Nonunitarity on Lepton Flavor Violation, Neutrino Oscillation, Leptogenesis, and Lightest Neutrino Mass

机译:羊肉非少性对Lepton风味侵权,中微子振荡,溶素和最轻的中子粒子的影响

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Neutrino physics is a mature branch of science with all the three neutrino mixing angles and two mass squared differences determined with high precision. In spite of several experimental verifications of neutrino oscillations and precise measurements of two mass squared differences and the three mixing angles, the unitarity of the leptonic mixing matrix is not yet established, leaving room for the presence of small nonunitarity effects. Deriving the bounds on these nonunitarity parameters from existing experimental constraints, on cLFV decays such as mu - e gamma, mu - tau gamma, and tau - e gamma, we study their effects on the generation of baryon asymmetry through leptogenesis and neutrino oscillation probabilities. We consider a model where see-saw is extended by an additional singlet S which is very light but can give rise to nonunitarity effects without affecting the form on see-saw formula. We do a parameter scan of a minimal see-saw model in a type I see-saw framework satisfying the Planck data on baryon to photon ratio of the Universe, which lies in the interval 5.8 x 10(-10) Y-B 6.6 x 10(-10) (BBN). We predict values of lightest neutrino mass and Dirac and Majorana CP-violating phases delta(CP), alpha, and beta, for normal hierarchy and inverted hierarchy for one-flavor leptogenesis. It is worth mentioning that all these four quantities are unknown yet, and future experiments will be measuring them.
机译:Neutrino物理学是一家成熟的科学分支,所有三个中微子混合角度和高精度确定的两个质量平方差异。尽管有几种实验验证的中微子振荡和两个质量平方差和三个混合角度的精确测量,但尚未建立石油混合基质的统一性,留下了存在小的非谨慎效应的空间。从现有的实验限制中导出这些非少用度参数的界限,在CLFV衰变(如MU - &gt)上。伽马,亩 - & tau gamma和tau-& γ,我们通过溶渗滤和中微子振荡概率研究它们对Baryon不对称的产生的影响。我们考虑一个额外的单次SINGL的延伸的模型,这是非常光的,但可以引起非谨慎效应而不影响SEE SAW公式上的形式。我们在众所周知的ID-SAW框架中进行最小的SEE-SAW模型进行参数扫描,该框架满足Baryon上的Planck数据到宇宙的光子率,其位于间隔5.8 x 10(-10)& Y-B& 6.6 x 10(-10)(BBN)。我们预测最轻的中性细胞和Dirac和MajoranaCP侵犯阶段Delta(CP),α和β的值,用于一浓度的含型含有的正常层次和倒置等级。值得一提的是,所有这四项尚未尚不清楚,未来的实验将测量它们。

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