论文标题
层次结构问题和顶级Yukawa:顶级合作伙伴解决方案的替代方案
The Hierarchy Problem and the Top Yukawa: An Alternative to Top Partner Solutions
论文作者
论文摘要
我们讨论了Yukawa耦合$ y_t $在层次结构问题上的角色,并为与顶级合作伙伴的常规解决方案构建替代方案。在Susy或Composite Higgs之类的传统模型中,顶级合作伙伴取消了对Higgs二次术语的顶级循环贡献。然而,缺乏这种有色伙伴的证据将这些模型推向了越来越多的微调区域。在这里,提出了一种减轻顶环的替代方法,允许自然电动对称性断裂。强调我们尚未在高尺度上测量顶级的相互作用,我们设想这种相互作用仅在红外线中接近其相当大的强度,但在高尺度上得到了强烈抑制。我们首先通过修改Yukawa耦合的运行来讨论可能的影响。然后,我们转向在一环级别生成顶部Yukawa的模型。源自二维操作员,在越过新的自由度的质量阈值时会下降。无论哪种情况,顶级合作伙伴都被一些具有较强相互作用的新型顶级颗粒所取代。因此,引入了一个非常不同的现象学,例如四个顶级最终状态的大型质量运行和信号,将进行详细讨论。在这种机制的帮助下,解决层次结构问题的解决方案可以将其推向(定义明确的)较高量表,并且最终的自然性测试可能会推迟到100 TEV撞机的人,例如FCC。
We discuss the role of the top-quark Yukawa coupling $y_t$ concerning the hierarchy problem and construct an alternative scheme to the conventional solutions with top partners. In traditional models, like SUSY or composite Higgs, top partners cancel the top loop contribution to the Higgs quadratic term. The lack of evidence for such colored partners however drives these models into more and more fine-tuned regions. Here, an alternative means to mitigate the top loop, allowing for natural electroweak symmetry breaking, is presented. Emphasizing that we have not measured the top-Higgs interactions at high scales yet, we envisage scenarios where this interaction is only approaching its sizable strength in the infra-red, but gets strongly suppressed at high scales. We first discuss possible effects via a modification of the running of the top Yukawa coupling. Then, we turn to models where the top Yukawa is generated at one-loop level. Originated from a dimension-six operator, it drops when crossing the mass threshold of new degrees of freedom. In either case, the top partners are replaced by some new top-philic particles with strong interaction. Thus, a very different phenomenology, such as large top mass running and signals in four top final states, is introduced, which will be discussed in detail. With the assistance of this mechanism, the solution to the hierarchy problem can be pushed to a (well-defined) higher scale, and a final test of naturalness might be deferred to a 100 TeV Collider, like the FCC.