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- W2094072011 abstract "From a dual-resonance model with currents included through the minimal gauge interaction, the deep-inelastic electron scattering is considered. It gives the Bjorken scaling for $ensuremath{nu}{W}_{2}$ while ${W}_{1}$ vanishes, a property which is common among the models where the current is coupled to bosons. Scaling occurs because of the existence of a current-algebra fixed pole. Deep-inelastic electron scattering with one detected final-state particle is also considered which, following Mueller, is connected with the discontinuity of a six-point amplitude. In a special kinematic region, three out of four structure functions scale because of a fixed pole, while outside this region the fixed pole cannot be responsible for scaling anymore. Then a speculation of Pomeranchukon assignment does show the scaling. Inelastic Compton scattering is also considered which, in the parton model of Bjorken and Paschos, scales and is proportional to $ensuremath{nu}{W}_{2}$. This property is satisfied in the present model. Electron-positron annihilation into hadrons is considered without renormalization whose cross section falls off as ${s}^{frac{ensuremath{-}5}{2}}$. It is suggested that a proper dual renormalization for the self-mass diagram of the photon may change this result." @default.
- W2094072011 created "2016-06-24" @default.
- W2094072011 creator A5033616084 @default.
- W2094072011 date "1972-01-15" @default.
- W2094072011 modified "2023-10-18" @default.
- W2094072011 title "Bjorken Scaling For Inclusive and Quasi-Inclusive Processes in the Dual-Resonance Model" @default.
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- W2094072011 doi "https://doi.org/10.1103/physrevd.5.427" @default.
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