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Lattice calculation of the η_cη_c and J/psi J/psi s-wave scattering length

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arxiv 2411.11533 v3 pith:CYW6TL4B submitted 2024-11-18 hep-lat hep-exhep-ph

Lattice calculation of the η_cη_c and J/psi J/psi s-wave scattering length

classification hep-lat hep-exhep-ph
keywords scatteringlatticelengthmassresultss-wavesectorcalculate
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We calculate the s-wave scattering length in the $0^+$ sector of $\eta_c\eta_c$ and the $2^+$ sector of $J/\psi J/\psi$ using three $N_f=2$ twisted mass gauge ensembles with the lattice spacing $a=0.0667,0.085,0.098$ fm, respectively. The scattering lengths are extracted using the conventional L{\"u}scher finite size method. We observe sizable discretization effects and the results after a continuum extrapolation are $a^{0^+}_{\eta_c\eta_c}=-0.104(09)$ fm and $a^{2^+}_{J/\psi J/\psi}=-0.165(16)$ fm. The slight difference of light quark mass is ignored in this study. Our results indicate that the interaction between the two respective charmonia are repulsive in nature in both cases.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Lattice determination of the neutrino background for $J/\psi \rightarrow \gamma + \textrm{invisible}$

    hep-lat 2026-01 conditional novelty 6.0

    Lattice QCD predicts Br(J/ψ → γννbar) = 1.00(9)(7)×10^-10, the Standard Model neutrino background for J/ψ → γ + invisible.

  2. Next-to-leading order QCD corrections to electromagnetic production and decay of fully charm tetraquarks

    hep-ph 2025-12 conditional novelty 6.0

    The first NLO QCD corrections to fully charm tetraquark → γγ decay are given, with photon-fusion production cross sections predicted.

  3. Symmetry Analysis of Compact Tetraquark States and Implications for the Level Ordering of the Fully Charmed Candidates $X(6600)$, $X(6900)$, and $X(7100)$

    hep-ph 2026-07 unverdicted novelty 5.0

    Symmetry analysis of compact tetraquarks shows low-energy states favor J^P=2+ and places X(6600), X(6900), X(7100) among the lower levels of the fully charmed spectrum.

  4. Symmetry Analysis of Compact Tetraquark States and Implications for the Level Ordering of the Fully Charmed Candidates $X(6600)$, $X(6900)$, and $X(7100)$

    hep-ph 2026-07 conditional novelty 5.0

    Counting symmetry-allowed states up to orbital angular momentum L=3 predicts low-lying compact tetraquarks prefer J^P=2^+, matching the observed 2^{++} fully charmed X states.