English

Prospects for ditauonium discovery at colliders

High Energy Physics - Phenomenology 2023-06-28 v2 High Energy Physics - Experiment Nuclear Experiment Nuclear Theory

Abstract

The feasibility of observing ditauonium, the bound state of two tau leptons, at e+ee^+e^- colliders (BES III at s=3.78\sqrt{s} = 3.78 GeV, Belle II at s=10.6\sqrt{s} = 10.6 GeV, a future super tau-charm factory (STCF) at s2mτ\sqrt{s} \approx 2m_{\tau}, and the FCC-ee at s=91.2\sqrt{s} = 91.2 GeV) as well as in hadronic and photon-photon collisions at the LHC, is studied. Cross sections and expected yields for spin-0 para- (T0\mathcal{T}_0) and spin-1 ortho- (T1\mathcal{T}_1) ditauonium are presented for nine different production and decay processes. Para-ditauonium can be observed at the FCC-ee via photon fusion in its diphoton decay (γγT0γγ\gamma\gamma\to\mathcal{T}_0\to\gamma\gamma). Ortho-ditauonium can be observed at STCF via e+eT1μ+μe^+e^-\to\mathcal{T}_1\to\mu^+\mu^-, where a threshold scan with monochromatized beams can also provide a very precise extraction of the tau lepton mass with a O(25\mathcal{O}(25 keV) uncertainty or less. Observing pp T1(μ+μ)+X\to \mathcal{T}_1(\mu^+\mu^-)+X at the LHC is possible by identifying its displaced vertex with a good control of the combinatorial dimuon background. In addition, we compute the rare decay branching fractions of ditauonium into quarkonium plus a photon.

Keywords

Cite

@article{arxiv.2302.07365,
  title  = {Prospects for ditauonium discovery at colliders},
  author = {David d'Enterria and Hua-Sheng Shao},
  journal= {arXiv preprint arXiv:2302.07365},
  year   = {2023}
}

Comments

15 pages, 6 figures. Minor mods. to match published version: Phys. Lett. B 842 (2023) 137960

R2 v1 2026-06-28T08:40:18.282Z