UHE Neutrinos: Fusing gluons within diffraction cone

Abstract

Currently available estimates of the gluon-fusion effect in ultra-high energy neutrino-nucleon interactions as well as in DIS on protons suffer from uncertainty in defining the scattering profile function (b). Indeed, the area, S, in the impact parameter space populated with interacting gluons varies by a factor of 4 - 5 from one analysis to another. To get rid of uncertainties we specify the dipole-nucleon partial-wave amplitude (b) which meets the restrictions imposed by both the total dipole-nucleon cross section and the small angle elastic scattering amplitude. The area S becomes a well defined quantity proportional to the diffraction cone slope. We solve numerically the non-linear color dipole BFKL equation and evaluate the UHE neutrino-nucleon total cross section. Our finding is that the saturation is a rather weak effect, 25%, up to E 1012 GeV.

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