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arXiv:1402.1407·v2·Nuclear Theory

Nonperturbative shell-model interactions from the in-medium similarity renormalization group

S. K. Bogner · H. Hergert · J. D. Holt · A. Schwenk · S. Binder · A. Calci · J. Langhammer · R. Roth

Abstract

We present the first ab initio construction of valence-space Hamiltonians for medium-mass nuclei based on chiral two- and three-nucleon interactions using the in-medium similarity renormalization group. When applied to the oxygen isotopes, we find experimental ground-state energies are well reproduced, including the flat trend beyond the drip line at 24O. Similarly, natural-parity spectra in 21,22,23,24O are in agreement with experiment, and we present predictions for excited states in 25,26O. The results exhibit a weak dependence on the harmonic-oscillator basis parameter and reproduce spectroscopy within the standard sd valence space.

Comments: 6 pages, 5 figures, published version

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