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The massless three-loop Wilson coefficients for the deep-inelastic structure functions F2, FL, xF3 and g1
被引:0
|作者:
J. Blümlein
P. Marquard
C. Schneider
K. Schönwald
机构:
[1] Deutsches Elektronen-Synchrotron DESY,Institut für Theoretische Teilchenphysik
[2] Johannes Kepler University Linz,undefined
[3] Research Institute for Symbolic Computation (RISC),undefined
[4] Karlsruher Institut für Technologie (KIT),undefined
来源:
Journal of High Energy Physics
|
/
2022卷
关键词:
Deep Inelastic Scattering or Small-x Physics;
Higher-Order Perturbative Calculations;
Renormalization Group;
The Strong Coupling;
D O I:
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学科分类号:
摘要:
We calculate the massless unpolarized Wilson coefficients for deeply inelastic scattering for the structure functions F2(x, Q2), FL(x, Q2), xF3(x, Q2) in the MS¯\documentclass[12pt]{minimal}
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\begin{document}$$ \overline{\textrm{MS}} $$\end{document} scheme and the polarized Wilson coefficients of the structure function g1(x, Q2) in the Larin scheme up to three-loop order in QCD in a fully automated way based on the method of arbitrary high Mellin moments. We work in the Larin scheme in the case of contributing axial-vector couplings or polarized nucleons. For the unpolarized structure functions we compare to results given in the literature. The polarized three-loop Wilson coefficients are calculated for the first time. As a by-product we also obtain the quarkonic three-loop anomalous dimensions from the O(1/ε) terms of the unrenormalized forward Compton amplitude. Expansions for small and large values of the Bjorken variable x are provided.
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