DOE OSTI · 1812890
A.I. for nuclear physics
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Abstract
Nuclear science is concerned with the understanding of the nature of matter, its basic constituents and their interaction to form the elements and the properties we observe. This includes the forms of matter we see around us and also exotic forms such as those that existed in the first moments after the Big Bang and that exist today inside neutron stars. The techniques, tools, and expertise needed for nuclear physics (NP) research are therefore diverse in nature. State-of-the art accelerators are being developed to illuminate the dynamical basis of the core of the atom in terms of the fundamental constituents called quarks and gluons and to increase the number of isotopes with known properties. This scientific infrastructure is reaching scales and complexities that require computational methods for tasks such as anomaly detection in operational data. New methodologies are needed to detect anomalies and to optimize operating parameters, predict failures as well as to discover new optimization algorithms.
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Bedaque, Paulo, Boehnlein, Amber, Cromaz, Mario, Diefenthaler, Markus, Elouadrhiri, Latifa, Horn, Tanja, Kuchera, Michelle, Lawrence, David, Lee, Dean, Lidia, Steven, McKeown, Robert, Melnitchouk, Wally, Nazarewicz, Witold, Orginos, Kostas, Roblin, Yves, Scott Smith, Michael, Schram, Malachi, Wang, Xin-Nian. 2021-03-22. A.I. for nuclear physics. https://doi.org/10.1140/epja%2Fs10050-020-00290-x
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