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Nucleon strange quark content from two-flavor lattice QCD with exact chiral symmetry

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arxiv 1011.1964 v2 pith:OYLBP2IS submitted 2010-11-09 hep-lat hep-ph

classification hep-lathep-ph
keywords latticequarkstrangechiralcontentdynamicalexactnucleon
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Strange quark content of the nucleon is calculated in dynamical lattice QCD employing the overlap fermion formulation. For this quantity, exact chiral symmetry guaranteed by the Ginsparg-Wilson relation is crucial to avoid large contamination due to a possible operator mixing with $\bar{u}u+\bar{d}d$. Gauge configurations are generated with two dynamical flavors on a 16^3 x 32 lattice at a lattice spacing a \simeq 0.12fm. We directly calculate the relevant three-point function on the lattice including a disconnected strange quark loop utilizing the techniques of all-to-all quark propagator and low-mode averaging. Our result f_{T_s} = 0.032(8)(22), is in good agreement with our previous indirect estimate using the Feynman-Hellmann theorem.

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  1. Unveiling the Strong Interaction origin of Baryon Masses with Lattice QCD

    hep-lat 2024-11 conditional novelty 6.0 of 10

    First-principles lattice QCD decomposes baryon masses into quark sigma terms and a roughly flavor-independent gluon trace anomaly around 1 GeV.

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