DocumentCode
1951808
Title
Exploration of High-Dimensional Nuclei Data
Author
Fuentes, Fernando ; Kettani, Houssain ; Ostrouchov, George ; Stoitsov, Mario ; Nam, Hai Ah
Author_Institution
Electr. & Comput. Eng. & Comput. Sci. Dept., Polytech. Univ. of Puerto Rico, San Juan, Puerto Rico
fYear
2010
fDate
26-28 Feb. 2010
Firstpage
521
Lastpage
524
Abstract
Density Functional Theory (DFT) provides the theoretical foundation for a self-consistent mean-field description of the nucleus in terms of one-body densities and currents. The idea is to construct a functional whose input is the proton and neutron densities and currents, and whose output yields the ground-state energy and other properties of the nucleus. Extensive computations of ground-state energies and other observable properties of several thousand nuclei are required in order to find a universal functional that covers the entire chart of nuclei. The analysis looks for hidden relationships between observables to determine a functional that can reliably predict nuclear properties in regions where no experimental data exist. Using methods for dimension reduction and visualization tools, it is hypothesized that the deformation of the neutrons is related to other characteristics of the nuclei. The discovered relationships with the deformation of the neutrons take us a step closer toward the universal functional.
Keywords
deformed nuclei; density functional theory; nuclear density; nuclear energy levels; nuclear models; nuclear shape; density functional theory; dimension reduction; ground-state energy; high-dimensional nuclei data; mean-field description; neutron current; neutron density; neutron pairing gap; neutron quadrupole deformation; nuclear properties; one-body current; one-body density; proton current; proton density; theoretical foundation; visualization tools; Computer networks; Computer science; Data engineering; Electronic mail; Isotopes; Mathematics; Neutrons; Nuclear power generation; Physics computing; Protons; Density Functional Theory; Neutron Pairing Gap; Neutron Quadrupole Deformation; Universal Functional;
fLanguage
English
Publisher
ieee
Conference_Titel
Communication Software and Networks, 2010. ICCSN '10. Second International Conference on
Conference_Location
Singapore
Print_ISBN
978-1-4244-5726-7
Electronic_ISBN
978-1-4244-5727-4
Type
conf
DOI
10.1109/ICCSN.2010.105
Filename
5437722
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