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Higgs Boson Precision Analysis of the Full LHC Run 1 and Run 2 Data

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arxiv 2402.02822 v3 pith:L6W25A37 submitted 2024-02-05 hep-ph hep-ex

classification hep-phhep-ex
keywords higgscouplingsanalysisbosonsigmadataerrorsfits
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We perform global fits of the Higgs boson couplings to the full Higgs datasets collected at the LHC with the integrated luminosities per experiment of approximately 5/fb at 7 TeV, 20/fb at 8 TeV, and up to 139/fb at 13 TeV. Our combined analysis based on the experimental signal strengths used in this work and the theoretical ones elaborated for our analysis reliably reproduce the results in the literature. We reveal that the LHC Higgs precision data are no longer best described by the SM Higgs boson taking account of extensive and comprehensive CP-conserving and CP-violating scenarios found in several well-motivated models beyond the SM. Especially, in most of the fits considered in this work, we observe that the best-fitted values of the normalized Yukawa couplings are about $2\sigma$ below the corresponding SM ones with the $1\sigma$ errors of 3%-5%. On the other hand, the gauge-Higgs couplings are consistent with the SM with the $1\sigma$ errors of 2%-3%. Incidentally, the reduced Yukawa couplings help to explain the excess of the $H\to Z\gamma$ signal strength of $2.2\pm 0.7$ recently reported by the ATLAS and CMS collaborations.

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Cited by 2 Pith papers

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    Combining Higgs inflation with feeble U(1)D vector dark matter via RG running narrows the allowed Higgs mixing angle and BSM Higgs mass, and predicts measurable deviations in Higgs self-couplings.

  2. Evading Dark Matter Bounds through NLSP-Assisted Freeze-Out with Long-Lived Signatures

    hep-ph 2025-06 conditional novelty 5.0 of 10

    In a U(1)B-L model with four chiral fermions, conversion-driven freeze-out lets a long-lived heavier fermion set the dark matter relic density while direct detection stays weak.

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