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Knocking on new physics’ door with a scalar resonance

机译:标量共振敲开新物理学的门

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摘要

We speculate about the origin of the recent excess at (sim )750?GeV in diphoton resonance searches observed by the ATLAS and CMS experiments using the first 13?TeV data. Its interpretation as a new scalar resonance produced in gluon fusion and decaying to photons is consistent with all relevant exclusion bounds from the 8 TeV LHC run. We provide a simple phenomenological framework to parametrize the properties of the new resonance and show in a model-independent way that, if the scalar is produced in gluon fusion, additional new colored and charged particles are required. Finally, we discuss some interpretations in various concrete setups, such as a singlet (pseudo-) scalar, composite Higgs, and the MSSM.
机译:我们推测ATLAS和CMS实验使用前13个TeV数据观察到的双光子共振搜索中(sim)750?GeV最近过量的起源。它被解释为在胶子聚变中产生并衰减到光子的新标量共振,这与8 TeV LHC运行中的所有相关排除范围一致。我们提供了一个简单的现象学框架来参数化新共振的性质,并以与模型无关的方式表明,如果标量是通过胶子聚变产生的,则还需要其他新的有色和带电粒子。最后,我们讨论了各种具体设置中的一些解释,例如单重态(伪)标量,复合希格斯和MSSM。

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