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Hauptverfasser: Saez, Alejandro, Conigli, Alessandro, Frison, Julien, Herdoíza, Gregorio, Pena, Carlos
Format: Preprint
Veröffentlicht: 2024
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Online-Zugang:https://arxiv.org/abs/2401.11546
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author Saez, Alejandro
Conigli, Alessandro
Frison, Julien
Herdoíza, Gregorio
Pena, Carlos
author_facet Saez, Alejandro
Conigli, Alessandro
Frison, Julien
Herdoíza, Gregorio
Pena, Carlos
contents We perform the scale setting procedure of a mixed action setup consisting of valence Wilson twisted mass fermions at maximal twist on CLS ensembles with $N_f=2+1$ flavours of $O(a)$-improved Wilson sea quarks. We determine the gradient flow scale $t_0$ using pion and kaon masses and decay constants in the isospin symmetric limit of QCD as external physical input. We employ model variation techniques to explore the systematic uncertainties in the extraction of the ground state signal of lattice observables, as well as for the continuum-chiral extrapolations. We observe that the combined analysis of the mixed action data with that based on $O(a)$-improved Wilson valence quarks, provides an improved control of the extrapolation of $t_0$ to the physical point.
format Preprint
id arxiv_https___arxiv_org_abs_2401_11546
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Determination of the Gradient Flow Scale $t_0$ from a Mixed Action with Wilson Twisted Mass Valence Quarks
Saez, Alejandro
Conigli, Alessandro
Frison, Julien
Herdoíza, Gregorio
Pena, Carlos
High Energy Physics - Lattice
We perform the scale setting procedure of a mixed action setup consisting of valence Wilson twisted mass fermions at maximal twist on CLS ensembles with $N_f=2+1$ flavours of $O(a)$-improved Wilson sea quarks. We determine the gradient flow scale $t_0$ using pion and kaon masses and decay constants in the isospin symmetric limit of QCD as external physical input. We employ model variation techniques to explore the systematic uncertainties in the extraction of the ground state signal of lattice observables, as well as for the continuum-chiral extrapolations. We observe that the combined analysis of the mixed action data with that based on $O(a)$-improved Wilson valence quarks, provides an improved control of the extrapolation of $t_0$ to the physical point.
title Determination of the Gradient Flow Scale $t_0$ from a Mixed Action with Wilson Twisted Mass Valence Quarks
topic High Energy Physics - Lattice
url https://arxiv.org/abs/2401.11546