We report preliminary results from an analysis of the pion scalar form factor computed on a set of the tr[M]=const CLS gauge ensembles with Nf=2+1 Wilson Clover-improved sea quarks. The calculations are carried out for light quarks masses corresponding to Mπ≈0.130MeV…350MeV, four values of the lattice spacing a≈0.049fm…0.086fm and a large range of physical volumes. A fine-grained momentum resolution is achieved by allowing for non-vanishing sink momenta and by including two particularly large and fine boxes close to physical quark masses (i.e. T×L3=192×963, Mπ≤172MeV, a≤0.064fm). The pertinent quark-disconnected contributions have been computed to high precision using a scheme combining 1.) the one-end trick on stochastic volume sources for the computation of differences between two quark flavors with 2.) the hopping parameter expansion and hierarchical probing to evaluate the loops for the heaviest, single quark flavor.
@article{arxiv.2401.06914,
title = {The pion scalar form factor with $N_f=2+1$ Wilson fermions},
author = {Konstantin Ottnad and Georg von Hippel},
journal= {arXiv preprint arXiv:2401.06914},
year = {2024}
}
Comments
11 pages, 5 figures, Talk presented at the 40th International Symposium on Lattice Field Theory (LATTICE2023), July 31st - August 4th, 2023, Fermilab, Batavia, Illinois, USA