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arXiv:1602.02965·v1·Nuclear Theory

Efficacy of the SU(3) scheme for ab initio large-scale calculations beyond the lightest nuclei

T. Dytrych · P. Maris · K. D. Launey · J. P. Draayer · J. P. Vary · D. Langr · E. Saule · M. A. Caprio · U. Catalyurek · M. Sosonkina

Abstract

We report on the computational characteristics of ab initio nuclear structure calculations in a symmetry-adapted no-core shell model (SA-NCSM) framework. We examine the computational complexity of the current implementation of the SA-NCSM approach, dubbed LSU3shell, by analyzing ab initio results for 6Li and 12C in large harmonic oscillator model spaces and SU(3)-selected subspaces. We demonstrate LSU3shell's strong-scaling properties achieved with highly-parallel methods for computing the many-body matrix elements. Results compare favorably with complete model space calculations and significant memory savings are achieved in physically important applications. In particular, a well-chosen symmetry-adapted basis affords memory savings in calculations of states with a fixed total angular momentum in large model spaces while exactly preserving translational invariance.

Comments: 11 pages, 8 figures

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