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Generalized parton distributions of sea quark at zero skewness in the light-cone Model
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abstract
We study the chiral-even generalized parton distributions (GPDs) of $\bar{u}$ and $\bar{d}$ quarks at zero skewness using the overlap representation within the light cone formalism. The GPDs of $\bar{u}$ and $\bar{d}$ quarks can be expressed as the convolution of the light cone wave functions which are obtained from the baryon-meson fluctuation model in terms of the $|q\bar{q}B\rangle$ Fock states. We present the numerical results for $H^{\bar{u}/P}(x,\xi,\Delta^2)$, $H^{\bar{d}/P}(x,\xi,\Delta^2)$, $E^{\bar{u}/P}(x,\xi,\Delta^2)$ and $E^{\bar{d}/P}(x,\xi,\Delta^2)$. We apply the model resulting GPDs to calculate the orbital angular momentum of the $\bar{u}$ and $\bar{d}$ quarks, showing that $L^{\bar{u}/P}$, $L^{\bar{d}/P}$ are positive and $L^{\bar{u}/P}$ is smaller than $L^{\bar{d}/P}$. The sea quark OAM distributions in the impact parameter space $L_{\bar{q}}(x,\boldsymbol{b_T})$ are also calculated.
Forward citations
Cited by 2 Pith papers
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Twist-3 generalized parton distributions of sea quarks at zero skewness in the light-cone quark model
A light-cone meson-baryon model is used to compute the eight nonzero twist-3 generalized parton distributions of ubar and dbar sea quarks at zero skewness, plus the derived e(x) and orbital angular momentum.
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Mechanical properties of the nucleon from the generalized parton distributions
Using a double-distribution GPD model constrained by elastic-scattering data, the paper fits DQ(0) = -3.37 ± 0.17 from Compton form factors and derives proton pressure, shear, and radii.
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