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arXiv:1909.04549·v2·High Energy Physics — Phenomenology

Probing Flavor Non-Universal Theories Through Higgs Physics at the LHC and Future Colliders

Wen Han Chiu🇺🇸 · Zhen Liu🇺🇸 · Lian-Tao Wang🇺🇸

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Abstract

We explored the possibility that Higgs coupling to new physics violates flavor universality. In particular, we parameterize such models with dimension-six effective operators which modify the coupling between the first generation quarks, Higgs boson, and boson. Through the use of boosted Higgsstrahlung events at both the HL-LHC and potential future hadron colliders, as well as existing ATLAS data for background estimates, we projected constraints on the scale of new physics as a function of the Wilson coefficient. The high energy process will provide unique information about these class of operators, and the sensitivity is competitive with the LEP electroweak precision measurements. We include different scenarios of the overall systematic uncertainties and the PDF uncertainties when presenting the projected sensitivities. We also discuss the constraints from FCNCs to these flavor-violating models and the complementarity of the exotic Higgs decay to the process.

Comments: 8 pages, 7 figures, 1 table; v2 corrected typos, updated references, corrected for a numerical error in plots, matches published version

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