Probing the Single Production of First-Generation Singlet Vector-like Leptons at Future e+e- Colliders
Yao-Bei Liu, Stefano Moretti
Abstract
We study the single production of first-generation weak-isosinglet vector-like leptons (VLLs) at future e+e- colliders, considering the channels e+e- eE with E Wνe and E eZ. For the heavy VLL masses under consideration, the decay products of the highly boosted W and Z bosons merge into a single fat-jet, providing a powerful handle for signal identification and background suppression. A comprehensive Monte Carlo simulation is carried out at s=1 TeV at the International Linear Collider (ILC) and 1.5 TeV at the Compact Linear Collider (CLIC). The 2σ exclusion and 5σ discovery reaches are determined as functions of the integrated luminosity and the mixing parameter θL for representative benchmark masses. Our results show that future e+e- colliders can effectively probe the first-generation singlet VLL scenario through these channels. The 1 TeV ILC can probe masses up to 900 GeV, while the 1.5 TeV CLIC extends the reach to 1400 GeV, surpassing existing limits from hadron colliders and complementing constraints from electroweak precision measurements.
Create a lesson
Related papers
Comprehensive reconstruction of collider events with hypergraph representation learning and graph-conditioned diffusion
Lining Mao, Yvonne Peters, Ethan Simpson et al.
New Dynamics (?) of J/ψJ/ψ and ΥΥ families from QCD Laplace sum rules at NLO
S. Narison, Andry Rabemananjara, D. Rabetiarivony
Transverse Tau Spin Correlations and the Weak Electric Dipole Moment at Future Z Factories
Xin-Yu Du, Zi-Yue Zou, Xiao-Gang He et al.
Addressing the S-wave scalar f0(1500)-resonance in quasi-four-body FCNC rare Bs f0(1500) ( π+ π- ) + - / ν ν decays
Xue Zheng, Hai-Bing Fu, Dan-Dan Hu et al.
Complete electroweak corrections to diphoton production via gluon fusion at the LHC
Long-Bin Chen, Zi-Qiang Chen, Hai Tao Li et al.
Baryon-to-meson ratios in the Lund jet plane: resolving string-junction and thermal-fragmentation effects
Robert Vertesi