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arXiv:0907.4790·v1·High Energy Physics — Phenomenology

A new numerical method for obtaining gluon distribution functions , from the proton structure function

Martin M. Block (Department of Physics abd Astronomy, Northwestern University, Evanston, IL)🇺🇸

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Abstract

An exact expression for the leading-order (LO) gluon distribution function from the DGLAP evolution equation for the proton structure function for deep inelastic scattering has recently been obtained [M. M. Block, L. Durand and D. W. McKay, Phys. Rev. D{\bf 79}, 014031, (2009)] for massless quarks, using Laplace transformation techniques. Here, we develop a fast and accurate numerical inverse Laplace transformation algorithm, required to invert the Laplace transforms needed to evaluate , and compare it to the exact solution. We obtain accuracies of less than 1 part in 1000 over the entire and spectrum. Since no analytic Laplace inversion is possible for next-to-leading order (NLO) and higher orders, this numerical algorithm will enable one to obtain accurate NLO (and NNLO) gluon distributions, using only experimental measurements of .

Comments: 9 pages, 2 figures

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