Improved analysis of nucleon isovector charges and twist-2 matrix elements on CLS $N_f=2+1$ ensembles

26 Jul 2021, 13:45
15m
Oral presentation Hadron Structure Hadron Structure

Speaker

Konstantin Ottnad (University of Mainz)

Description

Preliminary results are presented for nucleon isovector charges and twist-2 matrix elements which have been obtained employing an improved analysis strategy to deal with excited state contamination. The set of CLS N_f=2+1 gauge ensembles in this study has been extended compared to our 2018 calculation, including an ensemble at physical quark masses. Besides the addition of new ensembles, the number of gauge configurations and measurements has been increased on several of the existing ensembles and the analysis has been extended to include additional source-sink separations. The ensembles cover a range of the light quark mass corresponding to $M_\pi\approx 0.130\mathrm{MeV} \ldots 350\mathrm{MeV}$, four values of the lattice spacing $a\approx0.05\mathrm{fm}\ldots 0.09\mathrm{fm}$ and a large range of volumes. Results at the physical point are computed for each observable from a combined chiral, continuum and finite size extrapolation.

Primary author

Konstantin Ottnad (University of Mainz)

Co-authors

Dr Dalibor Djukanovic (Helmholtz Institute Mainz) Tim Harris (University of Milan Bicocca) Harvey Meyer (Johannes Gutenberg University Mainz) Georg von Hippel (University of Mainz) Hartmut Wittig

Presentation materials