A holographic calculation derives the glueball-fermion hard-scattering amplitude from type IIB string theory and predicts s^{-11} fixed-angle cross-section scaling for the lightest states.
Deep inelastic scattering from polarized spin-$1/2$ hadrons at low $x$ from string theory
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abstract
We study polarized deep inelastic scattering of charged leptons from spin-$1/2$ hadrons at low values of the Bjorken parameter and large 't Hooft coupling in terms of the gauge/string theory duality. We calculate the structure functions from type IIB superstring theory scattering amplitudes. We discuss the role of the non-Abelian Chern-Simons term and the Pauli term from the five-dimensional $SU(4)$ gauged supergravity. Furthermore, the exponentially small-$x$ regime where Regge physics becomes important is analyzed in detail for the antisymmetric structure functions. In this case the holographic dual picture of the Pomeron exchange is realized by a Reggeized gauge field. We compare our results with experimental data of the proton antisymmetric structure function $g_1$, obtaining a very good level of agreement.
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Glueball-fermion hard scattering from type IIB superstring theory
A holographic calculation derives the glueball-fermion hard-scattering amplitude from type IIB string theory and predicts s^{-11} fixed-angle cross-section scaling for the lightest states.