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Deflation acceleration of lattice QCD simulations

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arxiv 0710.5417 v1 pith:A6SDJ673 submitted 2007-10-29 hep-lat

Deflation acceleration of lattice QCD simulations

classification hep-lat
keywords deflationlatticealgorithmquarksimulationsimulationsacceleratedacceleration
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Close to the chiral limit, many calculations in numerical lattice QCD can potentially be accelerated using low-mode deflation techniques. In this paper it is shown that the recently introduced domain-decomposed deflation subspaces can be propagated along the field trajectories generated by the Hybrid Monte Carlo (HMC) algorithm with a modest effort. The quark forces that drive the simulation may then be computed using a deflation-accelerated solver for the lattice Dirac equation. As a consequence, the computer time required for the simulations is significantly reduced and an improved scaling behaviour of the simulation algorithm with respect to the quark mass is achieved.

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  1. Performance of Low Mode Averaging on Twisted-Mass Fermion Ensembles at the physical pion mass point

    hep-lat 2026-06 unverdicted novelty 4.0

    Numerical tests show low-mode averaging reduces noise in light meson and baryon observables on physical-pion twisted-mass ensembles, yielding renormalized chiral condensate 269.5(4.5) MeV.