论文标题

基于$ t'$ family群体的扭曲黄体动力学的预测

Predictions from warped flavordynamics based on the $T'$ family group

论文作者

Chen, Peng, Ding, Gui-Jun, Lu, Jun-Nan, Valle, José W. F.

论文摘要

我们使用五维扭曲的情景提出了一种现实的费米质和混合理论,在该场景中,所有费米子在散装中的传播和希格斯领域都位于ir brane上。假定的$ t'$风味对称性在Flavon Fields的臀部上被打破,这提供了一种一致的场景,在这种情况下,Fermion质量层次结构是由散装质量参数的适当选择产生的,而夸克和Lepton混合角则受家庭对称性的限制。中微子的质量分裂,混合参数和狄拉克CP相位均来自I型Seesaw机制,并且密切相关,从而预测了中微子振荡参数,以及预期的\ ZnBB衰减速率在即将到来的实验的触及范围内。该方案还提供了夸克部门风味可观察物的良好描述。

We propose a realistic theory of fermion masses and mixings using a five-dimensional warped scenario where all fermions propagate in the bulk and the Higgs field is localized on the IR brane. The assumed $T'$ flavor symmetry is broken on the branes by flavon fields, providing a consistent scenario where fermion mass hierarchies arise from adequate choices of the bulk mass parameters, while quark and lepton mixing angles are restricted by the family symmetry. Neutrino mass splittings, mixing parameters and the Dirac CP phase all arise from the type-I seesaw mechanism and are tightly correlated, leading to predictions for the neutrino oscillation parameters, as well as expected \znbb decay rates within reach of upcoming experiments. The scheme also provides a good global description of flavor observables in the quark sector.

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