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Measurement and interpretation of differential cross sections for Higgs boson production at s = 13 TeV

机译: s = 13 TeV

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Differential Higgs boson (H) production cross sections are sensitive probes for physics beyond the standard model. New physics may contribute in the gluon-gluon fusion loop, the dominant Higgs boson production mechanism at the LHC, and manifest itself through deviations from the distributions predicted by the standard model. Combined spectra for theH→γγ,H→ZZ, andH→bb ̄decay channels and the inclusive Higgs boson production cross section are presented, based on proton-proton collision data recorded with the CMS detector ats=13TeVcorresponding to an integrated luminosity of 35.9fb?1. The transverse momentum spectrum is used to place limits on the Higgs boson couplings to the top, bottom, and charm quarks, as well as its direct coupling to the gluon field. No significant deviations from the standard model are observed in any differential distribution. The measured total cross section is61.1±6.0(stat)±3.7(syst)pb, and the precision of the measurement of the differential cross section of the Higgs boson transverse momentum is improved by about 15% with respect to theH→γγchannel alone.
机译:希格斯玻色子(H)的差分生产横截面是超出标准模型的物理敏感探头。新的物理学可能会导致胶子-胶子聚变环,这是大型强子对撞机的主要希格斯玻色子产生机理,并通过偏离标准模型预测的分布而显现出来。基于由CMS检测器记录的质子-质子碰撞数据ats = 13TeV对应于35.9fb的综合光度,给出了H→γγ,H→ZZ和H→bb ̄衰变通道的组合光谱以及包含的希格斯玻色子产生截面1。横向动量谱用于限制希格斯玻色子与上,下和魅力夸克的耦合,以及对与胶子场的直接耦合。在任何差异分布中均未观察到与标准模型的显着偏差。测得的总横截面为61.1±6.0(stat)±3.7(syst)pb,并且仅相对于H→γγ通道,希格斯玻色子横向动量微分横截面的测量精度提高了约15%。 。

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