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$ρ$ meson form factors and parton distribution functions in impact parameter space

Published 29 Sep 2024 in hep-ph | (2409.19525v2)

Abstract: In this paper, we investigate the form factors and impact parameter space parton distribution functions of the $\rho$ meson derived from the generalized parton distributions within the framework of the Nambu--Jona-Lasinio model,employing a proper time regularization scheme. We compare the charge $G_C$, magnetic $G_M$, and quadrupole $G_Q$ form factors with lattice data. The dressed form factors, $G_CD$ and $G_MD$, exhibit good agreement with lattice results; however, $G_QD$ is found to be harder than what is observed in lattice calculations. The Rosenbluth cross section for elastic electron scattering on a spin-one particle can be expressed through the structure functions $A(Q2)$ and $B(Q2)$. Additionally, the tensor polarization $T_{20}(Q2,\theta)$ can also be formulated in terms of these form factors. We analyze the structure functions $A(Q2)$, $B(Q2)$ and tensor polarization function $T_{20}(Q2,\theta)$; our findings quantitatively align with predicted values across various limits. In impact parameter space, we examine parton distribution functions along with their dependence on longitudinal momentum fraction $x$ and impact parameter $\bm{b}{\perp}$. The width distributions in impact parameter space reveal that the range of the charge distribution ( q_C(x,\bm{b}{\perp}2) ) is the most extensive. In contrast, the transverse magnetic radius falls within a moderate range, while the quadrupole distribution ( q_Q(x,\bm{b}_{\perp}2) ) demonstrates the narrowest extent.

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