nucleon average quark momentum fraction with nf = 2+1 wilson fermions

nucleon average quark momentum fraction with nf = 2+1 wilson fermions

;Ottnad Konstantin;Harris Tim;Meyer Harvey;von Hippel Georg;Wilhelm Jonas;Wittig Hartmut
utilitas mathematica 2018 Vol. 175 pp. 06026-
141
konstantin2018epjnucleon

Abstract

We report on an analysis of the average quark momentum fraction of the nucleon and related quantities using Nf = 2 + 1 Wilson fermions. Computations are performed on four CLS ensembles covering three values of the lattice spacing at pion masses down to Mπ ≈ 200 MeV. Several source-sink separations (~ 1:0 fm to ~ 1:4 fm) are used to assess the excited-state contamination. To gain further insight, the generalized pencil-of-functions approach has been implemented to reduce the excited-state contamination in the relevant two-and three-point functions. Preliminary results are shown for the isovector nucleon charges from vector, axial vector and tensor derivative (twist-2) operators.

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201779
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10.1051/epjconf/201817506026
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