paper

Exploring lepton flavor violation phenomena of the and Higgs bosons at electron-proton colliders

arXiv:2305.05386

Abstract

We comprehensively study the potential for discovering lepton flavor violation (LFV) phenomena associated with the and Higgs bosons at the LHeC and FCC-he. Our meticulous investigation reveals the remarkable suitability of electron-proton colliders for probing these rare new physics signals. This is due to the distinct advantages they offer, including negligible pileups, minimal QCD backgrounds, electron-beam polarization , and the capability of distinguishing the charged-current from neutral-current processes. In our pursuit of LFV of the boson, we employ an innovative indirect probe, utilizing the -channel mediation of the boson in the process . For LFV in the Higgs sector, we scrutinize direct observations of the on-shell decays of and through the charged-current production of . Focusing on proves highly efficient due to the absence of positron-related backgrounds in the charged-current modes at electron-proton colliders. Through a dedicated signal-to-background analysis with the boosted decision tree algorithm, we demonstrate that the LHeC with the total integrated luminosity of can put significantly lower bounds than the HL-LHC with . Specifically, we find , , and . Furthermore, our study uncovers the exceptional precision of the FCC-he in measuring the LFV signatures of the and Higgs bosons, which indicates the potential for future discoveries in this captivating field.

Extensive updates including the BDT analysis for the LFV Z, the distinction between the LFV Z and LHV Z', and the signal significance when the number of backgrounds approach 0