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Staggered fermions
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Staggered fermions
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These notes are based on a series of lectures on staggered fermions given at the Centre de Physique Th\'eorique, Luminy, in Marseille, France, January 17-25, 2024.
Forward citations
Cited by 8 Pith papers
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Lattice QCD Study of Anomalous Transport Phenomena in Strongly Interacting Matter
First physical-point lattice QCD calculation of the Chiral Separation Effect conductivity, a zero equilibrium Chiral Magnetic Effect with conserved currents, and a localized equilibrium CME in inhomogeneous fields.
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Taste-splitting mass and edge modes in $3+1$ D staggered fermions
A kink in a one-link mass term for 3+1D staggered fermions creates a 2+1D domain wall with two-flavor massless Dirac fermions protected by SU(2) and parity, realizing the parity anomaly from the UV lattice Hamiltonian.
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Taste-splitting mass and edge modes in $3+1$ D staggered fermions
A one-link taste-splitting mass in 3+1D staggered fermions gaps the bulk and hosts two-flavor massless Dirac edge modes whose SU(2) and parity anomaly descend from UV bulk charges.
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A Guide to Symmetric Mass Generation in Lattice-QCD
SMG is compatible with lattice QCD under stated criteria; meson mass ratios probe the SMG UV fixed point and Goldstone tetraquarks signal type-II SMG.
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Staggered fermions with taste splitting mass term on dynamical configurations
Preliminary Nf=2 dynamical simulations of single-taste staggered fermions find negligible rotational-symmetry counterterms and a computable but still-too-heavy pion mass on volumes up to 16^4.
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A Guide to Symmetric Mass Generation in Lattice-QCD
Staggered fermion actions meet the criteria for symmetric mass generation in lattice QCD, with Goldstone tetraquark states as a signature of the type-II phase.
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Domain wall fermions
Domain wall fermions recover exact chiral symmetry in the infinite fifth dimension limit and produce an effective four-dimensional operator satisfying the Ginsparg-Wilson relation.
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Domain wall fermions
Domain wall fermions recover exact chiral symmetry in the infinite fifth-dimension limit and produce an effective 4D operator satisfying the Ginsparg-Wilson relation.
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