Observability of an ultraheavy diquark decaying into vectorlike quarks at the LHC
arXiv:2511.02474 · doi:10.1103/qxhl-4pqz
Abstract
We present a comprehensive analysis of the discovery reach and exclusion limits for an ultraheavy diquark scalar (7-9.5 TeV) decaying into a pair of vectorlike quarks (1.5-2 TeV) at the HL-LHC. Building on an improved signal selection efficiency achieved using Machine Learning techniques, we extend our previous six-jet final-state study by providing a complete likelihood-based statistical treatment of this search topology. The analysis incorporates theoretical and systematic uncertainties through nuisance parameters within the likelihood framework, enabling a consistent statistical interpretation. The mass regions of interest were determined through scans of the local -values, , and the upper limits on the model-dependent signal strength . The results indicate a promising sensitivity to ultraheavy diquark scalars within the explored mass range, suggesting that the HL-LHC could either discover or set stringent exclusion limits on such particles.
10 pages, 10 figures
References in corpus (8)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- Search for pair production of vector-like quarks in leptonic final states in proton-proton collisions at = 13 TeV
- Search for pair-production of vector-like quarks in lepton+jets final states containing at least one -tagged jet using the Run 2 data from the ATLAS experiment
- Search for resonant and nonresonant production of pairs of dijet resonances in proton-proton collisions at = 13 TeV
- Consistency and Interpretation of the LHC (Di-)Di-Jet Excesses
- Pursuit of paired dijet resonances in the Run 2 dataset with ATLAS
- Searches for pair-produced multijet resonances using data scouting in proton-proton collisions at = 13 TeV
- Ultraheavy diquark decaying into vectorlike quarks at the LHC