论文标题
从渐近安全和风味门户来建立模型
Model Building from Asymptotic Safety with Higgs and Flavor Portals
论文作者
论文摘要
我们全面搜索受渐近安全性启发的标准模型扩展。我们的型号具有单型矩阵标量场,三代矢量样的lept子,并通过新的Yukawa和Portal耦合直接链接到HIGGS和风味扇区。一个新颖的特征是,扩大的标量扇区可能会自发打破Lepton的风味普遍性。 We provide a complete two-loop renormalization group analysis of the running gauge, Yukawa, and quartic couplings to find ultraviolet fixed points and the BSM critical surface of parameters, $i.e.$ the set of boundary conditions at the TeV scale for which models remain well-behaved and predictive up to the Planck scale without encountering Landau poles or instabilities.这包括渐近安全标准模型扩展的模板,这些模板与量规耦合的测量值以及Higgs,顶部和底部质量相匹配。我们进一步详细介绍了涵盖生产,衰减,费米混合,异常磁矩,标量混合和手性增强的影响的现象学以及数据对模型参数的约束。还指出了质子 - 普罗顿和轻子山脉的签名,例如违反Lepton风味和流离失所的顶点,以及电偶极矩或带电的Lepton-Flovor-violation型工艺的前景。
We perform a comprehensive search for Standard Model extensions inspired by asymptotic safety. Our models feature a singlet matrix scalar field, three generations of vector-like leptons, and direct links to the Higgs and flavor sectors via new Yukawa and portal couplings. A novel feature is that the enlarged scalar sector may spontaneously break lepton flavor universality. We provide a complete two-loop renormalization group analysis of the running gauge, Yukawa, and quartic couplings to find ultraviolet fixed points and the BSM critical surface of parameters, $i.e.$ the set of boundary conditions at the TeV scale for which models remain well-behaved and predictive up to the Planck scale without encountering Landau poles or instabilities. This includes templates for asymptotically safe Standard Model extensions which match the measured values of gauge couplings and the Higgs, top, and bottom masses. We further detail the phenomenology of our models covering production, decay, fermion mixing, anomalous magnetic moments, effects from scalar mixing and chiral enhancement, and constraints on model parameters from data. Signatures at proton-proton and lepton colliders such as lepton flavor violation and displaced vertices, and the prospect for electric dipole moments or charged lepton-flavor-violating type processes, are also indicated.