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Chiral anomaly and the pion properties in the light-front quark model
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abstract
We explore the link between the chiral symmetry of QCD and the numerical results of the light-front quark model, analyzing both the two-point and three-point functions of the pion. Including the axial-vector coupling as well as the pseudoscalar coupling in the light-front quark model, we discuss the implication of the chiral anomaly in describing the pion decay constant, the pion-photon transition form factor and the electromagnetic form factor of the pion. In constraining the model parameters, we find that the chiral anomaly plays a critical role and the analysis of $F_{\pi\gamma}(Q^2)$ in timelike region is important. Our results indicate that the constituent quark picture is effective for the low and high $Q^2$ ranges implementing the quark mass evolution effect as $Q^2$ grows.
Forward citations
Cited by 2 Pith papers
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A holographic analysis of the pion
The pion's measured mass, decay constant, and charge radius fix two longitudinal-potential models that then reproduce its measured electromagnetic and transition form factors at low Q^2.
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Study on the Distribution Amplitude of the Scalar Meson $K_0^*(1430)$
The paper reports new sum-rule moments for the twist-2 distribution amplitude of K0*(1430) using an ad hoc x^2≈z^2≈xz correction and uses them to compute Bs→K0* form factors.
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