English

The leptonic future of the Higgs

High Energy Physics - Phenomenology 2017-09-20 v2 High Energy Physics - Experiment

Abstract

Precision study of electroweak symmetry breaking strongly motivates the construction of a lepton collider with center-of-mass energy of at least 240 GeV. Besides Higgsstrahlung (e+ehZe^+e^- \to hZ), such a collider would measure weak boson pair production (e+eWWe^+e^- \to WW) with an astonishing precision. The weak-boson-fusion production process (e+eννˉhe^+e^- \to \nu \bar{\nu} h) provides an increasingly powerful handle at higher center-of-mass energies. High energies also benefit the associated top-Higgs production (e+ettˉhe^+e^-\to t\bar th) that is crucial to constrain directly the top Yukawa coupling. The impact and complementarity of differential measurements, at different center-of-mass energies and for several beam polarization configurations, are studied in a global effective-field-theory framework. We define a "global determinant parameter" (GDP) which characterizes the overall strengthening of constraints independently of the choice of operator basis. The reach of the CEPC, CLIC, FCC-ee, and ILC designs is assessed.

Keywords

Cite

@article{arxiv.1704.02333,
  title  = {The leptonic future of the Higgs},
  author = {Gauthier Durieux and Christophe Grojean and Jiayin Gu and Kechen Wang},
  journal= {arXiv preprint arXiv:1704.02333},
  year   = {2017}
}

Comments

55 pages, lots of figures, v2: references added, minor corrections, extended discussions on quadratic EFT contributions and beam polarization effects, matches published version in JHEP