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Schwarz-preconditioned HMC algorithm for two-flavour lattice QCD

Martin Lüscher

TL;DR

The combination of a non-overlapping Schwarz preconditioner and the Hybrid Monte Carlo algorithm is shown to yield an efficient simulation algorithm for two-flavor lattice QCD with Wilson quarks.

Abstract

The combination of a non-overlapping Schwarz preconditioner and the Hybrid Monte Carlo (HMC) algorithm is shown to yield an efficient simulation algorithm for two-flavour lattice QCD with Wilson quarks. Extensive tests are performed, on lattices of size up to 32x24x24x24, with lattice spacings a~0.08 fm and at bare current-quark masses as low as 21 MeV.

Schwarz-preconditioned HMC algorithm for two-flavour lattice QCD

TL;DR

The combination of a non-overlapping Schwarz preconditioner and the Hybrid Monte Carlo algorithm is shown to yield an efficient simulation algorithm for two-flavor lattice QCD with Wilson quarks.

Abstract

The combination of a non-overlapping Schwarz preconditioner and the Hybrid Monte Carlo (HMC) algorithm is shown to yield an efficient simulation algorithm for two-flavour lattice QCD with Wilson quarks. Extensive tests are performed, on lattices of size up to 32x24x24x24, with lattice spacings a~0.08 fm and at bare current-quark masses as low as 21 MeV.

Paper Structure

This paper contains 3 sections, 1 equation.

Table of Contents

  1. 2.1.