arXiv · 2410.11388
Non-diagonal DVCS and transition GPDs: A unified framework for spinless hadron case $γ^* π\to γππ$
Abstract
Hadron-to-two-hadron transition generalized parton distributions (GPDs) extend the concept of hadron-to-resonance transition GPDs and provide a unified description of non-diagonal hard exclusive reactions in the generalized Bjorken limit. We present the formalism for the case of spinless hadrons addressing the non-diagonal deeply virtual Compton scattering $γ^*π\toγππ$ in terms of $π\toππ$ transition GPDs, which generalize GPDs for $π\to f_0, \, ρ, \, f_2, \, \cdots$ transitions. We work out the basic properties of $π\toππ$ transition GPDs and establish the soft pion theorems at the $2π$ production threshold. We construct the partial wave expansion of $π\toππ$ transition GPDs in the two-pion decay angles and employ the dispersive approach to constrain $π\toππ$ transition GPDs in terms of $ππ$-scattering phases with help of the Omnès representation. We estimate the $e^-π^+ \to e^- γπ^+ π^0$ cross section in the kinematics of the JLab@12 GeV incorporating the isolated $ρ(770)$ resonance state and work out the angular distributions of the cross section, specifying the observables sensitive to the polarization states of the produced $ρ(770)$ resonance.
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Sangyeong Son, Kirill M. Semenov-Tian-Shansky. 2025-02-04. Non-diagonal DVCS and transition GPDs: A unified framework for spinless hadron case $γ^* π\to γππ$. https://doi.org/10.1007/jhep01(2025)119
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