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Collective Modes in Light Nuclei from First Principles

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arxiv 1312.0969 v1 pith:PBJ5FSV2 submitted 2013-12-03 nucl-th

classification nucl-th
keywords collectivefirstinitiolightmodelmodesnuclearnuclei
verification ladder T0 review T1 audit T2 compute T3 formal
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Results for ab initio no-core shell model calculations in a symmetry-adapted SU(3)-based coupling scheme demonstrate that collective modes in light nuclei emerge from first principles. The low-lying states of 6Li, 8Be, and 6He are shown to exhibit orderly patterns that favor spatial configurations with strong quadrupole deformation and complementary low intrinsic spin values, a picture that is consistent with the nuclear symplectic model. The results also suggest a pragmatic path forward to accommodate deformation-driven collective features in ab initio analyses when they dominate the nuclear landscape.

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