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Kinematical higher-twist corrections in $\gamma^* \to M_1 M_2 \gamma$: Neutral meson production

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arxiv 2304.06389 v2 pith:Q2WSMCOV submitted 2023-04-13 hep-ph hep-exnucl-exnucl-th

classification hep-phhep-exnucl-exnucl-th
keywords correctionsgammakinematicalhigher-twistbesiiimesonamplitudescase
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We carry out the calculation of kinematical higher-twist corrections to the cross section of $\gamma^* \to M_1 M_2 \gamma$ up to twist 4, where $M_i$ is a scalar or pseudoscalar neutral meson. The three independant helicity amplitudes are presented in terms of the twist-2 generalized distribution amplitudes (GDAs), which are important non-perturbative quantities for understanding the 3D structure of hadrons. Since this process can be measured by BESIII in $e^+ e^-$ collisions, we perform the numerical estimate of the kinematical higher-twist corrections by using the kinematics of BESIII. We adopt the $\pi \pi$ GDA extracted from Belle measurements and the asymptotic $\pi \pi$ GDA to study the size of the kinematical corrections in the case of pion meson pair, and a model $\eta \eta$ GDA is used to see the impact of target mass corrections $\mathcal O(m^2/s)$ for $\gamma^* \to \eta \eta \gamma$. Our results show that the kinematical higher-twist corrections account for $\sim 20\%$ of the cross sections at BESIII on the average, and it is necessary to include them if one tries to extract GDAs from experimental measurements precisely. We also comment the case of $\pi^0 \eta$ production which is important for the search of hybrid mesons.

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  1. Di-$\pi^0$ Production and Generalized Distribution Amplitudes at Future Electron-Ion Colliders

    hep-ph 2025-01 conditional novelty 4.0 of 10

    Electron-heavy-ion collisions at the EIC could produce di-pion events at rates thousands of times higher than electron-proton or Belle II, making them a promising new way to measure pion generalized distribution amplitudes.

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