Microscopic nuclear mass table with high-performance computing

J Erler, N Birge, M Kortelainen… - Journal of Physics …, 2012 - iopscience.iop.org
J Erler, N Birge, M Kortelainen, W Nazarewicz, E Olsen, A Perhac, M Stoitsov
Journal of Physics: Conference Series, 2012iopscience.iop.org
We overview the methodology behind the large-scale mass table calculations based on the
nuclear density functional theory (DFT) with Skyrme energy density functionals (EDFs). The
calculations employing massively parallel computers are done in a large configuration
space of an axially deformed harmonic oscillator. Nuclear mass tables tabulating global
nuclear properties such as binding energies, radii, shape deformations, and pairing gaps
are obtained for several Skyrme EDFs augmented by a mixed-type pairing functional, using …
Abstract
We overview the methodology behind the large-scale mass table calculations based on the nuclear density functional theory (DFT) with Skyrme energy density functionals (EDFs). The calculations employing massively parallel computers are done in a large configuration space of an axially deformed harmonic oscillator. Nuclear mass tables tabulating global nuclear properties such as binding energies, radii, shape deformations, and pairing gaps are obtained for several Skyrme EDFs augmented by a mixed-type pairing functional, using an approximate particle number projection before variation. Specialty visualization tools have been developed to analyze the results. As an illustrative example of our current capabilities, we show some results for a wide range of even-even nuclei with Z≤ 120 and N≤ 300.
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