arXiv · 1105.2829
Ultrahigh-energy neutrino-nucleon deep-inelastic scattering and the Froissart bound
Abstract
We present a simple formula for the total cross section sigma^{nu N} of neutral- and charged-current deep-inelastic scattering of ultrahigh-energy neutrinos on isoscalar nuclear targets, which is proportional to the structure function F_2^{nu N}(M_V^2/s, M_V^2), where M_V is the intermediate-boson mass and s is the square of the center-of-mass energy. The coefficient in the front of F_2^{nu N}(x, Q^2) depends on the asymptotic low-x behavior of F_2^{nu N}. It contains an additional ln(s) term if F_2^{nu N} scales with a power of ln(1/x). Hence, an asymptotic low-x behavior F_2^{nu N} propto ln^2(1/x), which is frequently assumed in the literature, already leads to a violation of the Froissart bound on sigma^{nu N}.
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Alexey Yu. Illarionov, Bernd A. Kniehl, Anatoly V. Kotikov. 2011-05-13. Ultrahigh-energy neutrino-nucleon deep-inelastic scattering and the Froissart bound. https://doi.org/10.1103/physrevlett.106.231802
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