2021
DOI: 10.48550/arxiv.2107.02686
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Measuring the electron Yukawa coupling via resonant s-channel Higgs production at FCC-ee

David d'Enterria,
Andres Poldaru,
George Wojcik

Abstract: The Future Circular Collider (FCC-ee) offers the unique opportunity of studying the Higgs Yukawa coupling to the electron, y e , via resonant s-channel production, e + e − → H, in a dedicated run at √ s = m H . The signature for direct Higgs production is a small rise in the cross sections for particular final states, consistent with Higgs decays, over the expectations for their occurrence due to Standard Model (SM) background processes involving Z * , γ * , or t-channel exchanges alone. Performing such a meas… Show more

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Cited by 2 publications
(3 citation statements)
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References 50 publications
(61 reference statements)
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“…A preliminary generator-level study of eleven Higgs decay channels identifies two final states as the most promising ones in terms of statistical significance: H → gg and H → WW * → ν + 2 jets. For a benchmark monochromatization with δ √ s = 4.1 MeV and 10 ab −1 of integrated luminosity, a 1.3 standard deviation signal significance can be reached, corresponding to an upper limit on the e ± Yukawa coupling at 1.6 times the SM value: |y e | < 1.6|y sm e | at 95% confidence level, per IP and per year [46]. The expected final significance of the σ e + e − →H measurement, and associated 95% CL limits on |y e |, derived for a benchmark δ √ s = 4.1 MeV collision-energy spread and L int = 10 ab −1 , can be translated into any other combination of (δ √ s , L int ) values achievable through beam monochromatization.…”
Section: Electron Yukawa Couplingmentioning
confidence: 96%
See 1 more Smart Citation
“…A preliminary generator-level study of eleven Higgs decay channels identifies two final states as the most promising ones in terms of statistical significance: H → gg and H → WW * → ν + 2 jets. For a benchmark monochromatization with δ √ s = 4.1 MeV and 10 ab −1 of integrated luminosity, a 1.3 standard deviation signal significance can be reached, corresponding to an upper limit on the e ± Yukawa coupling at 1.6 times the SM value: |y e | < 1.6|y sm e | at 95% confidence level, per IP and per year [46]. The expected final significance of the σ e + e − →H measurement, and associated 95% CL limits on |y e |, derived for a benchmark δ √ s = 4.1 MeV collision-energy spread and L int = 10 ab −1 , can be translated into any other combination of (δ √ s , L int ) values achievable through beam monochromatization.…”
Section: Electron Yukawa Couplingmentioning
confidence: 96%
“…The FCC-ee offers a unique opportunity to measure y e via resonant s-channel Higgs production, e + e − → H, in a dedicated run at √ s = m H [45,46]. The signature for direct Higgs production is a small rise in the cross sections for final states consistent with Higgs decays over the expectations from SM background processes involving Z * , γ * , or t-channel exchanges alone.…”
Section: Electron Yukawa Couplingmentioning
confidence: 99%
“…For a discussion of the technical challenges involved in obtaining limits on g e at possible future lepton colliders, see Refs [186,187]…”
mentioning
confidence: 99%