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Optimized ${\cal O}(\alpha_s^2)$ correction to exclusive double $J/\psi$ production at $B$ factories

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arxiv 2306.11538 v1 pith:7SB2KLBC submitted 2023-06-20 hep-ph hep-ex

classification hep-phhep-ex
keywords alphacorrectioncorrectionsnegativepredictionamplitudeconstantdecay
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The failure of observing the $e^+ e^- \to J/\psi+J/\psi$ events at $B$ factories to date is often attributed to the significant negative order-$\alpha_s$ correction. In this work we compute the ${\cal O}(\alpha^2_s)$ correction to this process for the first time. The magnitude of the next-to-next-to-leading order (NNLO) perturbative correction is substantially negative so that the standard NRQCD prediction would suffer from an unphysical, negative cross section. This dilemma may be traced in the fact that the bulk contribution of the fixed-order radiative corrections stems from the perturbative corrections to the $J/\psi$ decay constant. We thus implement an improved NRQCD factorization framework, by decomposing the amplitude into the photon-fragmentation piece and the non-fragmentation piece. With the measured $J/\psi$ decay constant as input, which amounts to resumming a specific class of radiative and relativistic corrections to all orders, the fragmentation-induced production rate can be predicted accurately and serves a benchmark prediction. The non-fragmentation type of the amplitude is then computed through NNLO in $\alpha_s$ and at lowest order in velocity. Both the ${\cal O}(\alpha_s)$ and ${\cal O}(\alpha^2_s)$ corrections in the interference term become positive and exhibit a decent convergence behavior. Our finest prediction is $\sigma(e^+ e^- \to J/\psi+J/\psi)= 2.13^{+0.30}_{-0.06}$ fb at $\sqrt{s}=10.58$ GeV. With the projected integrated luminosity of 50 ${\rm ab}^{-1}$, the prospect to observe this exclusive process at \texttt{Belle} 2 experiment appears to be bright.

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  1. Vector meson production associated with a lepton pair in $e^+$ $e^-$ annihilation

    hep-ph 2024-12 conditional novelty 6.0 of 10

    New QED-based predictions show that e+e- → V l+ l- (V = J/ψ, ρ0, ω, φ) production rates at BESIII and Belle II are large enough to observe, with J/ψ μ+ μ- forming a significant background to J/ψ pair production.

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