论文标题
量规左右彩色家庭大统一假设的新物理学的前景
Prospects for New Physics from gauge Left-Right-Colour-Family Grand Unification hypothesis
论文作者
论文摘要
鉴于标准模型(SM)框架的巨大现象学成功,了解其特定结构在统一原则中动态出现的程度变得越来越重要。在这项研究中,我们提出了一种新型无异常的超对称(SUSY)大统一模型,该模型基于量规三化$ [\ MATHRM {su}(3)]^3 $对称性和一个本地$ \ Mathrm {surm {surm {surm {su}(2) \ Mathrm {u}(1)_ {\ Mathrm {f}} $家庭对称性,具有粒子光谱和量学对称性,受可能的还原模式$ \ MATHRM {E} _8 \ to \ \ to \ \ to \ \ m mathrm {e} \ times \ mathrm {u}(1)_ {\ mathrm {f}} $,带有后续$ \ mathrm {e} _6 \ to [\ mathrm {su}(3)(3)]^3 $对称性破坏步骤。在此框架中,$ \ mathrm {e} _6 $的高维操作员诱导了仪表和Yukawa交互的阈值校正,尤其是在由此产生的$ [\ Mathrm {su}(3)(3)^3 \ \ 3 \ \ yukawa的基本耦合中只有两个独特的Yukawa耦合。 \ Mathrm {su}(2)_ {\ Mathrm {f}} \ Times \ Mathrm {U}(1)_ {\ Mathrm {f}} $ Lagrangian。在此框架中出现的吸引力的功能包括Higgs-Marter统一和Electroweak量表处的独特的最小三个Higgs Doublet标量扇区,以及与自然界中观察到的光谱相一致的光式谱系中的树级层次结构。此外,我们的框架还揭示了在LHC和未来的colleders(例如矢量般的费米子)以及丰富的标量,仪表和中微子领域的新物理搜索的各种前景。
Given the tremendous phenomenological success of the Standard Model (SM) framework, it becomes increasingly important to understand to what extent its specific structure dynamically emerges from unification principles. In this study, we present a novel anomaly-free supersymmetric (SUSY) Grand Unification model based upon gauge trinification $[\mathrm{SU}(3)]^3$ symmetry and a local $\mathrm{SU}(2)_{\mathrm{F}} \times \mathrm{U}(1)_{\mathrm{F}}$ family symmetry, with particle spectra and gauge symmetries inspired by a possible reduction pattern $\mathrm{E}_8 \to \mathrm{E}_6\times \mathrm{SU}(2)_{\mathrm{F}} \times \mathrm{U}(1)_{\mathrm{F}}$, with subsequent $\mathrm{E}_6\to [\mathrm{SU}(3)]^3$ symmetry breaking step. In this framework, higher-dimensional operators of $\mathrm{E}_6$ induce the threshold corrections in the gauge and Yukawa interactions leading, in particular, to only two distinct Yukawa couplings in the fundamental sector of the resulting $[\mathrm{SU}(3)]^3\times \mathrm{SU}(2)_{\mathrm{F}} \times \mathrm{U}(1)_{\mathrm{F}}$ Lagrangian. Among the appealing features emergent in this framework are the Higgs-matter unification and a unique minimal three Higgs doublet scalar sector at the electroweak scale as well as tree-level hierarchies in the light fermion spectra consistent with those observed in nature. In addition, our framework reveals a variety of prospects for New Physics searches at the LHC and future colliders such as vector-like fermions, as well as rich scalar, gauge and neutrino sectors.