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Jim's research interests fall under the rubric of computational physics, with concentrated interests in the development of Monte Carlo algorithms for simulating quantum systems and the applications of such algorithms to strongly correlated electron systems. Current projects include the development of classical and quantum Monte Carlo methods for computing a few extremal eigenpairs of matrices whose orders are so large that the eigenvectors are too large to store in the memory of a computer and the numerical determination of the ground state symmetries of strongly correlated electron models of lanthanide and actinide materials. Types of ground states of interest include ferroelectric, anti-ferromagnetic, and ferromagnetic. Jim is the United States Representative and Secretary of the Commission of Computational Physics of the International Union of Pure and Applied Physics (IUPAP).
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Springer Series in Materials Science (2016): 3-12
Springer Series in Materials Science (2016): 103-113
crossref(2012)
arXiv (Cornell University)no. 7 (2011)
J.E. Gubernatis, T.E. Booth
Journal of Computational Physicsno. 19 (2008): 8508-8522
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