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On the reinterpretation of non-resonant searches for Higgs boson pairs

机译:关于Higgs Boson对的非谐振搜索的重新解释

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A bstract The detection of production of a pair of Higgs bosons before the end of LHC operation would be a clear evidence of New Physics (NP). As searches for non-resonant production of Higgs pairs are being designed it is of particular importance to be able to conveniently present current experimental results in terms of limits in the most ‘model-independent’ fashion possible. To this end, in this article we provide an analytic parametrization of the differential Higgs-pair production at the LHC in the effective field theory (EFT) extension of the SM. It results from a fit to the theory prediction for the gg → hh cross section at the 13 TeV LHC. Subsequently the resulting formula is used for a reweighing technique that allows to recast exclusion bounds from ATLAS and CMS hh → γγb b ˉ documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$ gamma gamma boverline{b} $$end{document} searches to any point of the considered EFT parameter space. We demonstrate with a fast simulation of the LHC detectors that with this approach it is possible to cover the continuous EFT parameter space, taking correctly into account the efficiencies of signal selections, without the necessity of rerunning a large number of full detector simulations. Finally, the resulting exclusion bounds are confronted with several explicit models, such as setups with additional scalars, including 2HDM, vector-like fermions, and minimal composite Higgs models, which are mapped to the EFT.
机译:甲bstract LHC操作结束之前的检测生产一希格斯玻色子的将是新物理(NP)的明确证据。由于正在设计用于非谐振生产希格斯对搜索它是特别重要的,以便能够方便地存在当前的实验结果中的最“不依赖模型的”方式可能限制术语。为此,在本文中我们在SM的有效场论(EFT)扩展LHC提供差分希格斯-对生产的解析参数化。它导致从拟合到理论预测为GG→HH在13 TeV的LHC横截面。随后将所得的式被用于再称重技术,该技术允许从ATLAS和CMS HH→γγbbˉ的DocumentClass [12磅] {最小} usepackage {amsmath} usepackage {wasysym} usepackage {amsfonts} usepackage重铸排斥界{amssymb} {usepackage amsbsy} {usepackage mathrsfs} {usepackage upgreek} setlength { oddsidemargin} { - 69pt} {开始文档} $$ 伽马伽马b 划线{b} $$ {端文件}搜索所考虑的EFT参数空间中的任何一点。我们证明与LHC探测器的快速模拟的是这种方法,可以覆盖连续EFT参数空间,同时正确地考虑信号选择的效率,无需重新运行了大量完全探测器模拟的必要性。最后,将得到的排斥界面临着几个明确的模型,如具有附加标量,包括2HDM,矢量状费米子和最小复合希格斯模型,其被映射到EFT设置。

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