论文标题
仪表/重力双动力学,用于复合希格斯模型的强耦合扇区
Gauge/gravity dual dynamics for the strongly coupled sector of composite Higgs models
论文作者
论文摘要
手性对称性破坏的全息模型用于研究复合HigGS模型中基础强动态的介子和重子谱。该模型的灵感来自自上而下的D-Brane构造。我们通过将其应用于$ N_F = 2 $ QCD来介绍此模型。我们计算梅森质量,衰减常数和核子质量。通过包括更高维操作员来反映QCD的紫外线物理,可以改善频谱。转向复合希格斯模型,我们以各种颜色和风味变化的理论中的夸克冷凝物的异常尺寸施加扰动。我们将详细的结果与以下理论的晶格模拟进行了比较:$ su(2)$ gauge理论和两个狄拉克基本面; $ sp(4)$仪表理论,具有基本和六元问题;和$ su(4)$仪表理论具有基本和六夸克。在每种情况下,全息效果都令人鼓舞,因为它们接近质量和衰减常数的晶格结果。此外,我们的模型使我们能够计算尚未在晶格上计算的其他可观察物,以放松淬火的近似值,并移至晶格上不可能的更真实的复合希格斯模型的精确费米含量。我们还提供了顶级合作伙伴(包括其质量和结构功能)的新全息描述。通过添加较高的尺寸运算符,我们可以显示最高的Yukawa耦合,可以通过订单1进行,以产生观察到的顶部质量。最后,我们预测了Ferretti和karateev提出的顶级合作伙伴的完整模型的频谱。
A holographic model of chiral symmetry breaking is used to study the dynamics plus the meson and baryon spectrum of the underlying strong dynamics in composite Higgs models. The model is inspired by top-down D-brane constructions. We introduce this model by applying it to $N_f=2$ QCD. We compute meson masses, decay constants and the nucleon mass. The spectrum is improved by including higher dimensional operators to reflect the UV physics of QCD. Moving to composite Higgs models, we impose perturbative running for the anomalous dimension of the quark condensate in a variety of theories with varying number of colors and flavours. We compare our results in detail to lattice simulations for the following theories: $SU(2)$ gauge theory with two Dirac fundamentals; $Sp(4)$ gauge theory with fundamental and sextet matter; and $SU(4)$ gauge theory with fundamental and sextet quarks. In each case, the holographic results are encouraging since they are close to lattice results for masses and decay constants. Moreover, our models allow us to compute additional observables not yet computed on the lattice, to relax the quenched approximation and move to the precise fermion content of more realistic composite Higgs models not possible on the lattice. We also provide a new holographic description of the top partners including their masses and structure functions. With the addition of higher dimension operators, we show the top Yukawa coupling can be made of order one, to generate the observed top mass. Finally, we predict the spectrum for the full set of models with top partners proposed by Ferretti and Karateev.