Auxiliary-field quantum Monte Carlo methods in nuclei
arXiv:1607.01870
Abstract
Auxiliary-field quantum Monte Carlo methods enable the calculation of thermal and ground state properties of correlated quantum many-body systems in model spaces that are many orders of magnitude larger than those that can be treated by conventional diagonalization methods. We review recent developments and applications of these methods in nuclei using the framework of the configuration-interaction shell model.
28 pages, 10 figures, a chapter in a review book "Emergent Phenomena in Atomic Nuclei from Large-Scale Modeling: a Symmetry-Guided Perspective," ed. K. D. Launey
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