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arXiv:2308.07953·v2·High Energy Physics — Phenomenology

Uncovering New Higgses in the LHC Analyses of Differential Cross Sections

Sumit Banik🇨🇭 · Guglielmo Coloretti🇨🇭 · Andreas Crivellin🇨🇭 · Bruce Mellado🇿🇦

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Abstract

Statistically significant tensions between the Standard Model (SM) predictions and the measured lepton distributions in differential top cross-sections emerged in LHC Run~1 data and became even more pronounced in Run~2 analyses. Due to the level of sophistication of the SM predictions and the performance of the ATLAS and CMS detectors, this is very remarkable. Therefore, one should seriously consider the possibility that these measurements are contaminated by beyond-the-SM contributions. In this article, we use differential lepton distributions from the latest ATLAS analysis to study a new physics benchmark model motivated by existing indications for new Higgses: a new scalar is produced via gluon fusion and decays to (GeV) and (GeV), which subsequently decay to and , respectively. In this setup, the total is reduced, compared to the SM, resulting in to , depending on the SM simulation used. Notably, allowing to vary, the combination of the distributions points towards GeV which is consistent with the existing and signals, rendering a mismodelling of the SM unlikely. Averaging the results of the different SM predictions, a non-vanishing cross-section for of pb is preferred. If is SM-like, this cross-section, at the same time explains the GeV excess, while the dominance of suggests that is the neutral component of the triplet with hypercharge~0.

Comments: 16 pages, 5 figures, 1 table. Version accepted for publication in JHEP

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