Nuclear Physics from Lattice QCD
arXiv:1110.5943 · doi:10.1016/j.ppnp.2011.12.008
Abstract
I review recent progress in the development of Lattice QCD into a calculational tool for nuclear physics. Lattice QCD is currently the only known way of solving QCD in the low-energy regime, and it promises to provide a solid foundation for the structure and interactions of nuclei directly from QCD.
18 pages, 12 figs. Lecture presented at the Erice School on Nuclear Physics 2011: From Quarks and Gluons to Hadrons and Nuclei, organized by A. Faessler and J. Wambach
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- FLAG Review 2019
- FLAG Review 2021
- Nuclear Equation of State from ground and collective excited state properties of nuclei
- A new class of variance reduction techniques using lattice symmetries
- Quantum Monte Carlo Methods in Nuclear Physics: Recent Advances
- Quantum Monte Carlo calculations of neutron matter with non-local chiral interactions
- Microscopically constrained mean field models from chiral nuclear thermodynamics
- Light Nuclei from Lattice QCD: Spectrum, Structure and Reactions
- Plans for Hadronic Structure Studies at J-PARC
- Lattice Studies for hadron spectroscopy and interactions