Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1995 · 106 citations · 18 references
We argue that parton distributions in coordinate space provide a more natural object for nonperturbative methods compared to the usual momentum distributions in which the physics of different longitudinal distances is being mixed. To illustrate the advantages of the coordinate space formulation, we calculate the coordinate space distributions for valence quarks in the proton using the QCD sum rule approach. A remarkable agreement is found between the calculated and the experimentally measured u-quark distribution up to light-cone distances ${\mathrm{\ensuremath{\Delta}}}^{\mathrm{\ensuremath{-}}}$=${\mathrm{\ensuremath{\Delta}}}^{0}$-${\mathrm{\ensuremath{\Delta}}}^{3}$ of order \ensuremath{\sim}1 fm in the proton rest frame. The calculation for valence d quarks gives much worse results; the reasons for this discrepancy are discussed.
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Calculation of baryon masses in quantum chromodynamics
B.L. Ioffe · Nuclear Physics B · 1981 · 852 citations
Correlation functions in the QCD vacuum
Edward Shuryak · Reviews of Modern Physics · 1993 · 320 citations
Engineering, Hadron Physic, Physics +11
CTEQ parton distributions and flavor dependence of sea quarks
James Botts, J. G. Morfín, Joseph F. Owens et al. · Physics Letters B · 1993 · 258 citations · Full text