Multiboson Signatures of Doubly Charged Scalars at a Same-Sign Muon Collider
Mariana Frank, Benjamin Fuks, Chayan Majumdar, Supriya Senapati
Abstract
We investigate the sensitivity of a same-sign μ+μ+ collider to doubly charged scalars in the Type-II seesaw framework, focusing on the regime in which the doubly charged scalar decays dominantly into same-sign W-boson pairs. Motivated by the μTRISTAN proposal, for a benchmark we consider a degenerate triplet spectrum at a center-of-mass energy of 2~ TeV and an integrated luminosity of 1~ ab-1. The signal process is studied in the fully hadronic W-decay mode, leading to a characteristic μ+μ+ + 8j final state. We develop a cut-based analysis based on high jet multiplicity and global hadronic W reconstruction, and then improve its sensitivity with a multivariate strategy exploiting reconstructed W observables, global event kinematics, multi-boson variables and spectator-muon information. The best-performing setup reaches a 2σ sensitivity level for doubly charged scalar masses up to 425-430~ GeV, extending the cut-based reach by a few tens of GeV. This indicates an improvement over the current LHC coverage, while also providing an independent probe based on a qualitatively different production mode and collider environment.
Create a lesson
Related papers
High-quality axion from chain seesaw
Pei-Hong Gu
Plasma Effects Suppress Mixing-Induced Collisional Freeze-In
Shao-Ping Li, Josef Pradler
Mass spectrum and decay widths of charmonium-like mesons: A diabatic approach with complex scaling
Zi-Zhao Zhang, Bo-Chao Liu
Centrality-dependent nuclear modification from hard-soft correlations in the glasma
Coleridge Faraday, W. A. Horowitz, Björn Schenke
Generalised Dynamic Radius Jets for Robust Collider Analyses
Songshaptak De, Tousik Samui, Ritesh K. Singh
Impact of Heavy Modes on Primordial Black Hole Formation
Guo-He Li, Mian Zhu, Chunshan Lin