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Lattice QCD and Dark Matter
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Classroom Contents
An Introduction to Lattice Quantum Chromodynamics by Nilmani Mathur
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- 1 Start
- 2 QCD
- 3 The particle Zoo
- 4 Euclidean Formulation
- 5 Scalar Theory
- 6 Birth of Lattice QCD
- 7 Lattice Formulation of QCD
- 8 Gauge Action
- 9 Continuum Limit
- 10 Fermions on the Lattice
- 11 Fermion Actions
- 12 Neilsen-Ninomiya No-Go Theorem
- 13 Wilson Fermions
- 14 Staggered Fermions
- 15 How to calculate an observable??
- 16 Statistical Evaluation -- Monte-Carlo Method
- 17 Rational Hybrid Monte Carlo Algorithm
- 18 Interpolating Fields
- 19 Quark Propagator
- 20 Analysis Extraction of Mass
- 21 Control of Sytemetics
- 22 hadronic mass generation
- 23 Predicting hadronic states
- 24 Rho decay
- 25 Static Quark Potential
- 26 SU3 Spectrum
- 27 Weak matrix elements
- 28 Forecasts for future errors in lattice-QCD calculations of selected quantities ---USQCD
- 29 Nuclear Physics from Lattice QCD
- 30 Lattice QCD and Cosmology-Astropysics
- 31 The Phases of QCD
- 32 QCD properties
- 33 Lattice QCD and Dark Matter
- 34 Topological Structure of QCD vacuum
- 35 Finite density
- 36 Challenges in lattice Gauge Theories
- 37 Cost of computation
- 38 'Clover' Gauge Generation Costs
- 39 Computing resources for LQCD
- 40 The road to exascale for Spectroscopy
- 41 Nuclear Physics Requires Exa-scale Computation
- 42 Connection of Lattice Field Theory to other fields
- 43 Outlook
- 44 Books
- 45 Q&A