arXiv:1906.12122·v2·Nuclear Theory
Nuclear effective field theory: status and perspectives
H.-W. Hammer🇩🇪 · S. König🇩🇪 · U. van Kolck🇫🇷
Abstract
The nuclear physics landscape has been redesigned as a sequence of effective field theories (EFTs) connected to the Standard Model through symmetries and lattice simulations of Quantum Chromodynamics (QCD). EFTs in this sequence are expansions around different low-energy limits of QCD, each with its own characteristics, scales, and ranges of applicability regarding energy and number of nucleons. We review each of the three main nuclear EFTs -- Chiral, Pionless, Halo/Cluster -- highlighting their similarities, differences, and connections. In doing so, we survey the structural properties and reactions of nuclei that have been derived from the ab initio solution of the few- and many-body problem built upon EFT input.
Comments: 76 pages, 29 figures, version to appear in Rev. Mod. Phys