English

New Physics in multi-Higgs boson final states

High Energy Physics - Phenomenology 2017-07-12 v3

Abstract

We explore the potential for the discovery of the triple-Higgs signal in the 2b2l±4j+E ⁣ ⁣ ⁣/2b2l^{\pm}4j+E\!\!\!/ decay channel at a 100100 TeV hadron collider. We consider both the Standard Model and generic new-physics contributions, described by an effective Lagrangian that includes higher-dimensional operators. The selected subset of operators is motivated by composite-Higgs and Higgs-inflation models. In the Standard Model, we perform both a parton-level and a detector-level analysis. Although the parton-level results are encouraging, the detector-level results demonstrate that this mode will be really challenging. However, sizable contributions from new effective operators can largely increase the cross section and/or modify the kinematics of the Higgs bosons in the final state. Taking into account the projected constraints from single and double Higgs-boson production, we propose benchmark points in the new physics models for the measurement of the triple-Higgs boson final state for future collider projects.

Keywords

Cite

@article{arxiv.1702.03554,
  title  = {New Physics in multi-Higgs boson final states},
  author = {Wolfgang Kilian and Sichun Sun and Qi-Shu Yan and Xiaoran Zhao and Zhijie Zhao},
  journal= {arXiv preprint arXiv:1702.03554},
  year   = {2017}
}

Comments

47 pages, 19 figures, 19 tables, added references, improved text, corrected typos

R2 v1 2026-06-22T18:16:04.808Z