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Energy Functional for Nuclear Masses

Date Issued
December 1, 2011
Author(s)
Bertolli, Michael Giovanni
Advisor(s)
Thomas Papenbrock
Additional Advisor(s)
Witek Nazarewicz
Kate Jones
Adolfo Eguiluz
Robert Harrison
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/19909
Abstract

An energy functional is formulated for mass calculations of nuclei across the nuclear chart with major-shell occupations as the relevant degrees of freedom. The functional is based on Hohenberg-Kohn theory. Motivation for its form comes from both phenomenology and relevant microscopic systems, such as the three-level Lipkin Model. A global fit of the 17-parameter functional to nuclear masses yields a root- mean-square deviation of χ[chi] = 1.31 MeV, on the order of other mass models. The construction of the energy functional includes the development of a systematic method for selecting and testing possible functional terms. Nuclear radii are computed within a model that employs the resulting occupation numbers.

Subjects

DFT

nuclear

structure

theory

many-body

statistics

Disciplines
Multivariate Analysis
Nuclear
Numerical Analysis and Computation
Numerical Analysis and Scientific Computing
Quantum Physics
Degree
Doctor of Philosophy
Major
Physics
Embargo Date
December 1, 2011
File(s)
Thumbnail Image
Name

BertolliDissertation.pdf

Size

1.99 MB

Format

Adobe PDF

Checksum (MD5)

247b4a67f65047b126e6d154ae96ac91


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