Evolution of Single-Particle Energies for N=9 Nuclei at Large N/Z

We have studied the nucleus super(14)B using the super(13)B(d,p) super(14 )B and super(15)C(d, super(3)He) super(14)B reactions. The two reactions provide complementary information about the negative-parity 1s sub(1/2) and 0d sub(5/2) neutron single-particle states in super(14)B. The data from the (...

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Veröffentlicht in:EPJ Web of conferences 2014-01, Vol.66, p.3098-1-03098-4
Hauptverfasser: Wuosmaa, A. H., Bedoor, S., Alcorta, M., Back, B. B., Brown, B. A., Deibel, C. M., Hoffman, C. R., Lighthall, J. C., Marley, S. T., Pardo, R. C., Rehm, K. E., Rogers, A. M., Schiffer, J. P., Shetty, D. V.
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Sprache:eng
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Zusammenfassung:We have studied the nucleus super(14)B using the super(13)B(d,p) super(14 )B and super(15)C(d, super(3)He) super(14)B reactions. The two reactions provide complementary information about the negative-parity 1s sub(1/2) and 0d sub(5/2) neutron single-particle states in super(14)B. The data from the (d,p) reaction give neutron-spectroscopic strengths for these levels, and the (d, super(3)He) results confirm the existence of a broad 2' excited state suggested in the literature. Together these results provide estimates of the sd-shell neutron effective single-particle energies in super(14)B.
ISSN:2100-014X
2100-014X
DOI:10.1051/epjconf/20146603098