论文标题

完整的一环辐射校正到$ e^+ e^ - \ to h^+ h^ - $ h^ - $ $ $

Full one-loop radiative corrections to $e^+ e^-\to H^+H^-$ in the inert doublet model

论文作者

Abouabid, Hamza, Arhrib, Abdesslam, Falaki, Jaouad El, Gong, Bin, Xie, Wenhai, Yan, Qi-Shu

论文摘要

我们计算带电标量对生产的完整单循环校正$ e^{+} e^{ - } \ to intert Doublet模型中的H^{+} h^{ - } $。已经使用了壳重新归一化方案。我们考虑了较弱的贡献以及软质量和硬质量的校正。我们使用Feynman Minogrammatic方法计算实际发射和一环虚拟校正。引入重新定义的横截面以治愈QED校正中发生的库仑奇异性。在考虑了理论约束,对撞机实验界和暗物质搜索范围之后,我们已经在三种情况下分析了惰性双线模型的参数空间。发现弱的相互作用主导了辐射校正,其大小由三重希格斯耦合$λ_{h^0 h^+ h^ - } $确定,后者与带电标量的质量进一步连接。在考虑所有约束的情况下,我们发现对于$ \ sqrt {s} = 250 $ gev和$ \ sqrt {s} = 500 $ gev,弱更正约为$ -6 \%\%\ sim-5 \%$ \%$和$ -10 $和$ -10 \%\%\%\%\%\ sim -3 \%。而对于$ \ sqrt {s} = 1000 $ gev,弱校正可以达到$ -15 \%\ sim +25 \%$。新功能是,当带电的标量重量比470 GEV重时,弱校正可以在阈值附近呈正。已提出了六个基准点供未来的对撞机搜索。

We compute the full one-loop radiative corrections for charged scalar pair production $e^{+}e^{-}\to H^{+}H^{-}$ in the inert doublet model. The on-shell renormalization scheme has been used. We take into account both the weak contributions as well as the soft and hard QED corrections. We compute both the real emission and the one-loop virtual corrections using the Feynman diagrammatic method. The resummed cross section is introduced to cure the Coulomb singularity which occurs in the QED corrections. We have analyzed the parameter space of the inert doublet model in three scenarios after taking into account theoretical constraints, the collider experimental bounds, and dark matter search bounds as well. It is found that the weak interaction dominates the radiative corrections, and its size is determined by the triple Higgs coupling $λ_{h^0 H^+ H^-}$, which is further connected to the mass of the charged scalar. In the scenario where all the constraints are taken into account, we find that for $\sqrt{s}=250$ GeV and $\sqrt{s}=500$ GeV, the weak corrections are around $-6\% \sim-5\%$ and $-10\% \sim -3\%$, respectively. While for $\sqrt{s}=1000$ GeV, the weak corrections can reach $-15\% \sim +25\%$. The new feature is that the weak corrections can be positive near the threshold when the charged scalar is heavier than 470 GeV. Six benchmark points for future collider searches have been proposed.

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