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Modern perspectives in lattice QCD : quantum field theory and high performance computing : École de physique des Houches, session XCIII, 3-28 August 2009

École d'été de physique théorique, Laurent Lellouch

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Abstract

1. Lattice Field Theory Fundamentals 2. Renormalization and lattice artifacts 3. Three Topics in Renormalization and Improvement 4. Chiral Symmetry and Lattice Fermions 5. Lattice QCD at non-zero temperature and baryon density 6. Computational Strategies in Lattice QCD 7. Simulations with the Hybrid Monte Carlo Algorithm: Implementation and Data Analysis 8. Applications of chiral perturbation theory to lattice QCD 9. Introduction to Non-perturbative Heavy Quark Effective Theory 10. Lattice Flavour Physics 11. Lattice QCD and Nuclear Physics 12. Lattice Gauge Theory Beyond the Standard Model

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What this paper is about

1. Lattice Field Theory Fundamentals 2. Renormalization and lattice artifacts 3. Three Topics in Renormalization and Improvement 4. Chiral Symmetry and Lattice Fermions 5. Lattice QCD at non-zero temperature and baryon density 6. Computational Strategies in Lattice QCD 7. Simulations with the Hybrid Monte Carlo Algorithm: Implementation and Data Analysis 8. Applications of chiral perturbation theory to lattice QCD 9. Introduction to Non-perturbative Heavy Quark Effective Theory 10. Lattice Flavour Physics 11. Lattice QCD and Nuclear Physics 12. Lattice Gauge Theory Beyond the Standard Model

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Available abstract

1. Lattice Field Theory Fundamentals 2. Renormalization and lattice artifacts 3. Three Topics in Renormalization and Improvement 4. Chiral Symmetry and Lattice Fermions 5. Lattice QCD at non-zero temperature and baryon density 6. Computational Strategies in Lattice QCD 7. Simulations with the Hybrid Monte Carlo Algorithm: Implementation and Data Analysis 8. Applications of chiral perturbation theory to lattice QCD 9. Introduction to Non-perturbative Heavy Quark Effective Theory 10. Lattice Flavour Physics 11. Lattice QCD and Nuclear Physics 12. Lattice Gauge Theory Beyond the Standard Model

Key concepts: Lattice QCD, Physics, Lattice field theory, Chiral perturbation theory, Lattice gauge theory, Quantum chromodynamics, Lattice model (finance), Renormalization

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Modern perspectives in lattice QCD : quantum field theory and high performance computing : École de physique des Houches, session XCIII, 3-28 August 2009 — Research Paper | ScholarLens