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Measuring Higgs Boson Self-couplings with $2\rightarrow 3$ VBS Processes

High Energy Physics - Phenomenology 2021-11-03 v3

Abstract

We study the measurement of Higgs boson self-couplings through 232\rightarrow 3 vector boson scattering (VBS) processes in the framework of Standard Model effective field theory (SMEFT) at both proton and lepton colliders. The SMEFT contribution to the amplitude of the 232\to3 VBS processes, taking WLWLWLWLhW_L W_L\rightarrow W_L W_L h and WLWLhhhW_L W_L\rightarrow h h h as examples, exhibits enhancement with the energy ABSMASME2Λ2\frac{\mathcal{A}^{\text{BSM}}}{\mathcal{A}^{\text{SM}}} \sim \frac{E^2}{\Lambda^2}, which indicates the sensitivity of these processes to the related dimension-six operators in SMEFT. Simulation of the full processes at both hadron and lepton colliders with a variety of collision energies are performed to estimate the allowed region on c6c_6 and cΦ1c_{\Phi_1}. Especially we find that, with the help of exclusively choosing longitudinal polarizations in the final states and suitable pTp_T cuts, WWhWWh process is as important as the more widely studied triple Higgs production (hhhhhh) in the measurement of Higgs self-couplings. Our analysis indicates that these processes can play important roles in the measurement of Higgs self-couplings at future 100 TeV pp colliders and muon colliders. However, their cross sections are generally tiny at low energy machines, which makes them much more challenging to explore.

Keywords

Cite

@article{arxiv.2105.11500,
  title  = {Measuring Higgs Boson Self-couplings with $2\rightarrow 3$ VBS Processes},
  author = {Junmou Chen and Chih-Ting Lu and Yongcheng Wu},
  journal= {arXiv preprint arXiv:2105.11500},
  year   = {2021}
}

Comments

32 pages, 12 figures, 15 tables