Isospin Symmetry at High Spin Studied via Nucleon Knockout from Isomeric States

One-neutron knockout reactions have been performed on a beam of radioactive ^{53}Co in a high-spin isomeric state. The analysis is shown to yield a highly selective population of high-spin states in an exotic nucleus with a significant cross section, and hence represents a technique that is applicab...

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Veröffentlicht in:Physical review letters 2016-08, Vol.117 (8), p.082502-082502, Article 082502
Hauptverfasser: Milne, S A, Bentley, M A, Simpson, E C, Baugher, T, Bazin, D, Berryman, J S, Bruce, A M, Davies, P J, Diget, C Aa, Gade, A, Henry, T W, Iwasaki, H, Lemasson, A, Lenzi, S M, McDaniel, S, Napoli, D R, Nichols, A J, Ratkiewicz, A, Scruton, L, Stroberg, S R, Tostevin, J A, Weisshaar, D, Wimmer, K, Winkler, R
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Sprache:eng
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Zusammenfassung:One-neutron knockout reactions have been performed on a beam of radioactive ^{53}Co in a high-spin isomeric state. The analysis is shown to yield a highly selective population of high-spin states in an exotic nucleus with a significant cross section, and hence represents a technique that is applicable to the planned new generation of fragmentation-based radioactive beam facilities. Additionally, the relative cross sections among the excited states can be predicted to a high level of accuracy when reliable shell-model input is available. The work has resulted in a new level scheme, up to the 11^{+} band-termination state, of the proton-rich nucleus ^{52}Co (Z=27, N=25). This has in turn enabled a study of mirror energy differences in the A=52 odd-odd mirror nuclei, interpreted in terms of isospin-nonconserving (INC) forces in nuclei. The analysis demonstrates the importance of using a full set of J-dependent INC terms to explain the experimental observations.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.117.082502