High-precision scale setting in lattice QCD

被引:0
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作者
Szabolcs Borsányi
Stephan Dürr
Zoltán Fodor
Christian Hoelbling
Sándor D. Katz
Stefan Krieg
Thorsten Kurth
Laurent Lellouch
Thomas Lippert
Craig McNeile
Kálmán K. Szabó
机构
[1] Bergische Universität Wuppertal,Institute for Theoretical Physics
[2] Jülich Supercomputing Centre,undefined
[3] Eötvös University,undefined
[4] Centre de Physique Théorique,undefined
[5] CNRS,undefined
[6] Aix-Marseille U. and U. Sud Toulon-Var,undefined
来源
Journal of High Energy Physics | / 2012卷
关键词
Lattice QCD; Lattice Gauge Field Theories;
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摘要
Scale setting is of central importance in lattice QCD. It is required to predict dimensional quantities in physical units. Moreover, it determines the relative lattice spacings of computations performed at different values of the bare coupling, and this is needed for extrapolating results into the continuum. Thus, we calculate a new quantity, w0, for setting the scale in lattice QCD, which is based on the Wilson flow like the scale t0 (M. Luscher, JHEP 08 (2010) 071). It is cheap and straightforward to implement and compute. In particular, it does not involve the delicate fitting of correlation functions at asymptotic times. It typically can be determined on the few per-mil level. We compute its continuum extrapolated value in 2 + 1-flavor QCD for physical and non-physical pion and kaon masses, to allow for mass-independent scale setting even away from the physical mass point. We demonstrate its robustness by computing it with two very different actions (one of them with staggered, the other with Wilson fermions) and by showing that the results agree for physical quark masses in the continuum limit.
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