high-energy physics

Lattice determination of the neutrino background for

arXiv:2601.18209 · doi:10.1103/3pm3-vmhh

summary

The paper presents the first lattice QCD calculation of the Standard Model decay J/ψ → γ ν ν̄, providing a branching fraction of about 1×10⁻¹⁰ to serve as a neutrino background benchmark for dark‑matter searches in radiative invisible quarkonium decays.

Abstract

Searching for dark matter is a primary goal of modern astronomy and particle physics. Invisible decays of heavy quarkonia are particularly promising for probing light dark matter, attracting broad interest due to their unique sensitivity. Experiments searching for radiative invisible decays of the have steadily improved upper limits, and upcoming facilities will push sensitivity further--making the precise determination and subtraction of the neutrino background indispensable. Here, we present the first lattice QCD calculation of the Standard Model decay , an irreducible background to . Our result for the branching fraction is , where the first uncertainty is statistical and the second is our systematic estimate. This work advances lattice-based determinations of neutrino backgrounds to quarkonium invisible decays, delivering an ab initio benchmark for . Our approach generalizes to other quarkonium channels (e.g., ) and provides critical theoretical support for dark matter searches at colliders.

8 pages, 5 figures, accepted by PRD

Topics & keywords

#lattice qcd#quarkonium decays#neutrino background#dark matter searches#radiative invisible decayJ/psibranching fractionγ ν ν̄lattice calculationStandard Modelsystematic uncertainty
Lattice determination of the neutrino background for $J/ψ\rightarrow γ+ \textrm{invisible}$ · wovepaper