$a_0(980)$-meson twist-2 distribution amplitude within the QCD sum rules and investigation of $D \to a_0(980) (\to\eta\pi) e^+\nu_e$
Zai-Hui Wu, Hai-Bing Fu, Tao Zhong, Dong Huang, Dan-Dan Hu, Xing-Gang, Wu

TL;DR
This paper investigates the twist-2 distribution amplitudes of the $a_0(980)$ meson using QCD sum rules, models these amplitudes with a harmonic oscillator approach, and applies the results to analyze $D$ meson semileptonic decays involving $a_0(980)$.
Contribution
It provides the first detailed calculation of $a_0(980)$ meson distribution amplitudes and applies them to predict $D$ meson decay form factors and branching ratios, aligning with experimental data.
Findings
Calculated moments of $a_0(980)$-meson distribution amplitudes up to 9th order.
Derived $D o a_0(980)$ transition form factors at zero momentum transfer.
Predicted branching fractions for $D$ decays involving $a_0(980)$ consistent with experimental measurements.
Abstract
In this paper, moments of -meson twist-2 light-cone distribution amplitudes were deeply researched by using QCD sum rules approach within background field theory. Up to 9th-order accuracy, we present at the initial scale , i.e. , , , , , respectively. An improved light-cone harmonic oscillator model for -meson twist-2 light-cone distribution amplitudes is adopted, where its parameters are fixed by using the least squares method based on the , and their goodness of fit reach to . Then, we calculate the $D\to…
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Quantum Chromodynamics and Particle Interactions · High-Energy Particle Collisions Research
