English

Top Secrets: Long-Lived ALPs in Top Production

High Energy Physics - Phenomenology 2023-11-02 v2 High Energy Physics - Experiment

Abstract

We investigate the discovery potential for long-lived particles produced in association with a top-antitop quark pair at the (High-Luminosity) LHC. Compared to inclusive searches for a displaced vertex, top-associated signals offer new trigger options and an extra handle to suppress background. We design a search strategy for a displaced di-muon vertex in the tracking detectors, in association with a reconstructed top-antitop pair. For axion-like particles with masses above the di-muon threshold, we find that the (High-Luminosity) LHC can probe effective top-quark couplings as small as ctt/fa=0.03(0.002)/|c_{tt}|/f_a = 0.03(0.002)/TeV and proper decay lengths as long as 20(300)20(300) m, assuming a cross section of 11 fb, with data corresponding to an integrated luminosity of 150 fb1^{-1} (3 ab1^{-1}). Our predictions suggest that searches for top-associated displaced di-muons will explore new terrain in the current sensitivity gap between searches for prompt di-muons and missing energy.

Keywords

Cite

@article{arxiv.2306.08686,
  title  = {Top Secrets: Long-Lived ALPs in Top Production},
  author = {Lovisa Rygaard and Jeremi Niedziela and Ruth Schäfer and Sebastian Bruggisser and Juliette Alimena and Susanne Westhoff and Freya Blekman},
  journal= {arXiv preprint arXiv:2306.08686},
  year   = {2023}
}