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The coupling of the lightest SUSY Higgs boson to two photons in the decoupling regime

机译:最轻的Susy Higgs玻色子在去耦制度中的两个光子的耦合

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We analyze the contribution of the SUSY particles to the coupling of the lightest Higgs boson to two photons in supersymmetric theories. We discuss to what extent these contributions can be large enough to allow for a discrimination between the lightest SUSY and the standard Higgs particles in the decoupling limit where all other Higgs bosons are very heavy and no supersymmetric particle has been discovered at future colliders. We find that only chargino and top squark loops can generate a sizeable difference between the standard and the SUSY Higgs-photon couplings. For masses above 250 GeV, the effect of chargino loops on the two-photon width is however smaller than ≈ 10% in the entire SUSY parameter space. Top squarks heavier than 250 GeV can induce deviations larger than 10% only if their couplings to the Higgs boson are large. Since top squark contributions can be sizeable, we derive the two-loop QCD correction to squark loops and show that they are well under control.
机译:我们分析了SUSY颗粒在超对对称理论中最轻的HIGGS玻色子耦合到两个光子的贡献。我们讨论这些贡献在多大程度上足够大,以便在去耦极限中允许最轻的Susy和标准的HIGGS颗粒之间的歧视,其中所有其他HIGG玻色子非常重,未来在未来的侵占者处发现了超对称粒子。我们发现只有Chargino和Top Squark环路可以在标准和SUSY HIGGS-Photon联轴器之间产生相当大的差异。对于250以上GEV的质量,Chargino环路对两光孔宽度的影响距离整个SESY参数空间中的≈10%。只有在Higgs玻色子的联轴器很大的情况下,才能诱导大于10%的偏差大于250 GEV。由于Top Squark贡献可以很大,我们从争吵循环推导出两环QCD校正,并显示它们在控制下很好。

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