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arxiv: 1009.5984 · v3 · submitted 2010-09-29 · ⚛️ nucl-th · astro-ph.SR· hep-ph· nucl-ex

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Three-body forces and shell structure in calcium isotopes

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classification ⚛️ nucl-th astro-ph.SRhep-phnucl-ex
keywords forcesmagicnuclearrepulsiveshellstructurethree-nucleonagreement
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Understanding and predicting the formation of shell structure from nuclear forces is a central challenge for nuclear physics. While the magic numbers N=2,8,20 are generally well understood, N=28 is the first standard magic number that is not reproduced in microscopic theories with two-nucleon forces. In this Letter, we show that three-nucleon forces give rise to repulsive interactions between two valence neutrons that are key to explain 48Ca as a magic nucleus, with a high 2+ excitation energy and a concentrated magnetic dipole transition strength. The repulsive three-nucleon mechanism improves the agreement with experimental binding energies.

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