We construct a parametrization of the deep-inelastic structure function of the proton F-2(x, Q(2)) based on all available experimental information from charged lepton deep-inelastic scattering experiments. The parametrization effectively provides a bias-free determination of the probability measure in the space of structure functions, which retains information on experimental errors and correlations. The result is obtained in the form of a Monte Carlo sample of neural networks trained on an ensemble of replicas of the experimental data. We discuss in detail the techniques required for the construction of bias-free parameterizations of large amounts of structure function data, in view of future applications to the determination of parton distributions based on the same method.
Unbiased determination of the proton structure function F-2(p) with faithful uncertainty estimation / L. Del Debbio, S. Forte, J.I. Latorre, A. Piccione, J. Rojo. - In: JOURNAL OF HIGH ENERGY PHYSICS. - ISSN 1029-8479. - 2005:3(2005), pp. 080.1-080.19. [10.1088/1126-6708/2005/03/080]
Unbiased determination of the proton structure function F-2(p) with faithful uncertainty estimation
S. ForteSecondo
;
2005
Abstract
We construct a parametrization of the deep-inelastic structure function of the proton F-2(x, Q(2)) based on all available experimental information from charged lepton deep-inelastic scattering experiments. The parametrization effectively provides a bias-free determination of the probability measure in the space of structure functions, which retains information on experimental errors and correlations. The result is obtained in the form of a Monte Carlo sample of neural networks trained on an ensemble of replicas of the experimental data. We discuss in detail the techniques required for the construction of bias-free parameterizations of large amounts of structure function data, in view of future applications to the determination of parton distributions based on the same method.Pubblicazioni consigliate
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