Domain wall QCD with physical quark masses
RBC, UKQCD collaborations: T. Blum, P.A. Boyle, N.H. Christ, J., Frison, N. Garron, R.J. Hudspith, T. Izubuchi, T. Janowski, C. Jung, A., Juettner, C. Kelly, R.D. Kenway, C. Lehner, M. Marinkovic, R.D. Mawhinney, G., McGlynn, D.J. Murphy, S. Ohta, A. Portelli, C.T. Sachrajda

TL;DR
This paper reports high-precision lattice QCD calculations of light hadronic quantities using 2+1 flavor domain wall fermions at near-physical pion masses, with a comprehensive chiral and continuum extrapolation.
Contribution
It provides the first high-precision results for several light hadronic quantities directly at physical quark masses using large-volume lattice simulations.
Findings
Sub-percent statistical errors achieved for key quantities
Precise determination of quark masses in the MS scheme at 3 GeV
Accurate calculation of the kaon mixing parameter B_K
Abstract
We present results for several light hadronic quantities (, , , , , , ) obtained from simulations of 2+1 flavor domain wall lattice QCD with large physical volumes and nearly-physical pion masses at two lattice spacings. We perform a short, O(3)%, extrapolation in pion mass to the physical values by combining our new data in a simultaneous chiral/continuum `global fit' with a number of other ensembles with heavier pion masses. We use the physical values of , and to determine the two quark masses and the scale - all other quantities are outputs from our simulations. We obtain results with sub-percent statistical errors and negligible chiral and finite-volume systematics for these light hadronic quantities, including: = 130.2(9) MeV; = 155.5(8) MeV; the average up/down quark mass and strange quark mass in…
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