论文标题

机器学习higgs对运动形状的三连金和夸克Yukawa耦合

Machine learning the trilinear and light-quark Yukawa couplings from Higgs pair kinematic shapes

论文作者

Alasfar, Lina, Gröber, Ramona, Grojean, Christophe, Paul, Ayan, Qian, Zhuoni

论文摘要

揭示希格斯对生产过程是高能量物理学的下一个重大挑战。在这项工作中,我们探讨了可解释的机器学习和合作游戏理论来提取希格斯对生产中三连线性希格斯的自我耦合。特别是,我们展示了Gluon-Gluon融合Higgs对生产过程的拓扑分解如何用于简化机器学习分析流。此外,我们将分析扩展到包括$ q \ bar {q} \至HH $生产,该生产在标准模型中受到了强烈抑制,以提取三线性higgs耦合,并从标准模型值中提取浅夸克Yukawa耦合的大偏差。对三线性higgs自我耦合,$κ_λ$的重新缩放的限制,以及Yukawa yukawa耦合的浅峰,$κ_U$和$κ_d$和$κ_D$,hl-lhc(fcc-hh)在hl-lhc(fcc-hh)中,从单个参数fits at:\ begin at:\开始 κ_λ&=&[0.53,1.7] \; \;([[0.97,1.03])\ nonumber \ newline κ_U&=&[ - 470,430] \; \;([ - 58,55])\ nonumber \ newline κ_d&=&[ - 360,360] \; \;([ - 26,28])\ nonumber \ end {eqnarray}我们表明,Yukawa耦合的同时修改可以显着稀释三线性量的约束。我们对FCC-HH进行了类似的分析。我们讨论了一些有动力的美味的新物理场景,这种分析占了上风。

Revealing the Higgs pair production process is the next big challenge in high energy physics. In this work, we explore the use of interpretable machine learning and cooperative game theory for extraction of the trilinear Higgs self-coupling in Higgs pair production. In particular, we show how a topological decomposition of the gluon-gluon fusion Higgs pair production process can be used to simplify the machine learning analysis flow. Furthermore, we extend the analysis to include $q\bar{q}\to hh$ production, which is strongly suppressed in the Standard Model, to extract the trilinear Higgs coupling and to bound large deviations of the light-quark Yukawa couplings from the Standard Model values. The constraints on the rescaling of the trilinear Higgs self-coupling, $κ_λ$, and the rescaling of light-quark Yukawa couplings, $κ_u$ and $κ_d$, at HL-LHC (FCC-hh) from single parameter fits are: \begin{eqnarray} κ_λ&=&[0.53,1.7] \;\;([0.97, 1.03])\nonumber \newline κ_u&=&[-470,430] \;\;([-58,55])\nonumber \newline κ_d&=&[-360,360] \;\;([-26,28])\nonumber \end{eqnarray} We show that the simultaneous modification of the Yukawa couplings can dilute the constraints on the trilinear coupling significantly. We perform similar analyses for FCC-hh. We discuss some motivated flavourful new physics scenarios where such an analysis prevails.

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