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Computing Heavy Elements

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arxiv 1107.5005 v1 pith:JA37ZC7L submitted 2011-07-25 nucl-th

Computing Heavy Elements

classification nucl-th
keywords elementsheavycalculationsnuclearvariouswellachievementsaddress
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Reliable calculations of the structure of heavy elements are crucial to address fundamental science questions such as the origin of the elements in the universe. Applications relevant for energy production, medicine, or national security also rely on theoretical predictions of basic properties of atomic nuclei. Heavy elements are best described within the nuclear density functional theory (DFT) and its various extensions. While relatively mature, DFT has never been implemented in its full power, as it relies on a very large number (~ 10^9-10^12) of expensive calculations (~ day). The advent of leadership-class computers, as well as dedicated large-scale collaborative efforts such as the SciDAC 2 UNEDF project, have dramatically changed the field. This article gives an overview of the various computational challenges related to the nuclear DFT, as well as some of the recent achievements.

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