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Chambers, A.J.; Somfleth, K.; Young, R.D.; Zanotti, J.M.; Perlt, H.; Schiller, A.
Deutsches Elektronen-Synchrotron (DESY), Hamburg (Germany)2017
Deutsches Elektronen-Synchrotron (DESY), Hamburg (Germany)2017
AbstractAbstract
[en] Deep-inelastic scattering, in the laboratory and on the lattice, is most instructive for understanding how the nucleon is built from quarks and gluons. The long-term goal is to compute the associated structure functions from first principles. So far this has been limited to model calculations. In this Letter we propose a new method to compute the structure functions directly from the virtual, all-encompassing Compton amplitude, utilizing the operator product expansion. This overcomes issues of renormalization and operator mixing, which so far have hindered lattice calculations of power corrections and higher moments.
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Mar 2017; 10 p; ADP--17-09/T1015; EDINBURGH--2017/04; LIVERPOOL-LTH--1122; ISSN 0418-9833; 

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Report
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Numerical Data
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AMPLITUDES, BARYONS, CONSTRUCTIVE FIELD THEORY, DATA, ELASTIC SCATTERING, ELECTROMAGNETIC INTERACTIONS, ELEMENTARY PARTICLES, FERMIONS, FIELD THEORIES, FUNCTIONS, FUNDAMENTAL INTERACTIONS, HADRONS, INFORMATION, INTERACTIONS, NUCLEONS, NUMERICAL DATA, QUANTUM FIELD THEORY, SCATTERING, SERIES EXPANSION
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