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- W1983167210 abstract "Abstract We begin by a short review of the high-order planar Feynman diagram model for hadrons and the corresponding analogue electrical network model. The model is based on the assumption that the important Feynman diagrams have a surface-like structure, and we define a density (of vertices, say) on such a surface for each high-order diagram. We then argue that the average density for an important diagram presumably is invariant under conformal transformations of the surface. From the electrical analogue model we also find that the partons existing at a given moment are those with propagators crossing an equipotential curve in the diagram. (By the expression partons we mean the particles connected to the propagators). In this way we find the distribution of parton momenta for a free particle with high energy. This distribution is connected to the structure functions νW 2 for deep-inelastic e-p and e-n scattering. By comparing with experiments we then find parameters describing the distribution of densities for the most important diagrams and the “average squared charge” of the partons. This article should be considered a reformulation of part of a paper by Susskind and ourselves. We are, however, formulating it somewhat differently and we do not use the string formulation of Susskind so much. We concentrate on deep inelastic scattering. Finally, we are making some remarks about the significance of the density of diagrams found." @default.
- W1983167210 created "2016-06-24" @default.
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- W1983167210 date "1972-05-01" @default.
- W1983167210 modified "2023-09-26" @default.
- W1983167210 title "High-order planar Feynman diagram model for hadrons and comparison with experiments on deep-inelastic electron-nucleon scattering" @default.
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- W1983167210 doi "https://doi.org/10.1016/0550-3213(72)90429-4" @default.
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