论文标题
单孔,外来状态和MUON $ G-2 $ TEV量表Trinification
Monopoles, Exotic states and Muon $g-2$ in TeV scale Trinification
论文作者
论文摘要
我们研究了基于规格对称的Trinifiend模型的低能量含义$ G = SU(3)_C \ Times SU(3)_l \ times su(3)_r $,而不施加量规耦合统一。一个最小的模型需要两个Higgs多重组,它们位于$ g $的双原则表示中,这被证明足以容纳标准模型(SM)费用质量,并通过循环校正和SEESAW机制生成,适用于重型中性的lept子以及经过的sm中性sm中性s的合适质量。我们估计$ su(3)_l \ times su(3)_r $ symmetry所要求的新的下色夸克的质量约为15个TEV的下限。我们检查了新量规玻色子的LHC的共振产量,该生产是$ g $的对称性破坏量表的16 TEV的下限。我们还展示了如何在模型中存在这些新的仪表玻色子和重量充电的瘦小体的存在下解决MUON $ G-2 $异常。最后,该模型预测存在带有三个量子$(6π/e)$ dirac磁性电荷和质量$ \ gtrsim 160 $ tev的拓扑稳定的单极。如果包括位于G的基本表示中的新物质字段,该模型可以预测出现异国情调的Leptons,Meson和Baryons,其中携带分数电荷(例如$ \ pm e/3 $ e/3 $和$ \ pm 2e/3 $),与DIRAC量化条件完全兼容。
We study the low energy implications of a trinification model based on the gauge symmetry $G= SU(3)_c \times SU(3)_L \times SU(3)_R$, without imposing gauge coupling unification. A minimal model requires two Higgs multiplets that reside in the bi-fundamental representation of $G$, and this is shown to be adequate for accommodating the Standard Model (SM) fermion masses and generate, via loop corrections and seesaw mechanism, suitable masses for the heavy neutral leptons as well as the observed SM neutrinos. We estimate a lower bound of around 15 TeV for the masses of the new down-type quarks that are required by the $SU(3)_L \times SU(3)_R$ symmetry. We examine the resonant production at the LHC of the new gauge bosons, which leads to a lower bound of 16 TeV for the symmetry breaking scale of $G$. We also show how the muon $g-2$ anomaly can be resolved in the presence of these new gauge bosons and the heavy charged leptons present in the model. Finally, the model predicts the presence of a topologically stable monopole carrying three quanta $(6 π/e)$ of Dirac magnetic charge and mass $\gtrsim 160$ TeV. If new matter fields lying in the fundamental representations of G are included, the model predicts the presence of exotic leptons, mesons and baryons carrying fractional electric charges such as $\pm e/3$ and $\pm 2e/3$, fully compatible with the Dirac quantization condition.