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Journal Articles

In-beam $$gamma$$-ray spectroscopy of $$^{35}$$Mg and $$^{33}$$Na

Gade, A.*; Basin, D.*; Brown, B. A.*; Campbell, C. M.*; Cook, J. M.*; Ettenauer, S.*; Glasmacher, T.*; Kemper, K. W.*; McDaniel, S.*; Obertelli, A.*; et al.

Physical Review C, 83(4), p.044305_1 - 044305_5, 2011/04

 Times Cited Count:20 Percentile:77.72(Physics, Nuclear)

no abstracts in English

Journal Articles

Two-proton knockout from $$^{32}$$Mg; Intruder amplitudes in $$^{30}$$Ne and implications for the binding of $$^{29,31}$$F

Fallon, P.*; Rodriguez-Vieitez, E.*; Macchiavelli, A. O.*; Gade, A.*; Tostevin, J. A.*; Adrich, P.*; Bazin, D.*; Bowen, M.*; Campbell, C. M.*; Clark, R. M.*; et al.

Physical Review C, 81(4), p.041302_1 - 041302_5, 2010/04

 Times Cited Count:37 Percentile:89.09(Physics, Nuclear)

no abstracts in English

Journal Articles

Intermediate-energy Coulomb excitation of $$^{30}$$Na

Ettenauer, S.*; Zwahlen, H.*; Adrich, P.*; Bazin, D.*; Campbell, C. M.*; Cook, J. M.*; Davies, A. D.*; Dinca, D.-C.*; Gade, A.*; Glasmacher, T.*; et al.

Physical Review C, 78(1), p.017302_1 - 017302_4, 2008/07

 Times Cited Count:13 Percentile:65.44(Physics, Nuclear)

no abstracts in English

Journal Articles

$$d_{5/2}$$ proton hole strength in neutron-rich $$^{43}$$P; Shell structure and nuclear shapes near $$N$$=28

Riley, L. A.*; Adrich, P.*; Baugher, T. R.*; Bazin, D.*; Brown, B. A.*; Cook, J. M.*; Cottle, P. D.*; Diget, C. A.*; Gade, A.*; Garland, D. A.*; et al.

Physical Review C, 78(1), p.011303_1 - 011303_5, 2008/07

 Times Cited Count:24 Percentile:80.03(Physics, Nuclear)

no abstracts in English

Journal Articles

Single-neutron knockout from intermediate energy beams of $$^{30,32}$$Mg; Mapping the transition into the "island of inversion"

Terry, J. R.*; Brown, B. A.*; Campbell, C. M.*; Cook, J. M.*; Davies, A. D.*; Dinca, D.-C.*; Gade, A.*; Glasmacher, T.*; Hansen, P. G.*; Sherrill, B. M.*; et al.

Physical Review C, 77(1), p.014316_1 - 014316_12, 2008/01

 Times Cited Count:68 Percentile:95.08(Physics, Nuclear)

no abstracts in English

Journal Articles

Spectroscopy of $$^{36}$$Mg; Interplay of normal and intruder configurations at the neutron-rich boundary of the "Island of Inversion"

Gade, A.*; Adrich, P.*; Bazin, D.*; Bowen, M. D.*; Brown, B. A.*; Campbell, C. M.*; Cook, J. M.*; Ettenauer, S.*; Glasmacher, T.*; Kemper, K. W.*; et al.

Physical Review Letters, 99(7), p.072502_1 - 072502_4, 2007/08

 Times Cited Count:73 Percentile:91.04(Physics, Multidisciplinary)

no abstracts in English

Journal Articles

Direct evidence for the onset of intruder configurations in neutron-rich Ne isotopes

Terry, J. R.*; Basin, D.*; Brown, B. A.*; Campbell, C. M.*; Church, J. A.*; Cook, J. M.*; Davies, A. D.*; Dinca, D.-C.*; Enders, J.*; Gade, A.*; et al.

Physics Letters B, 640(3), p.86 - 90, 2006/09

 Times Cited Count:55 Percentile:93.35(Astronomy & Astrophysics)

no abstracts in English

Journal Articles

Onset of intruder ground state in exotic Na isotopes and evolution of the $$N=20$$ shell gap

Utsuno, Yutaka; Otsuka, Takaharu*; Glasmacher, T.*; Mizusaki, Takahiro*; Homma, Michio*

Physical Review C, 70(4), p.044307_1 - 044307_8, 2004/10

A2004-0200.pdf:0.17MB

 Times Cited Count:137 Percentile:98.16(Physics, Nuclear)

We perform systematic calculations of nuclear moments and energy levels in neutron-rich Na isotopes with the Monte Carlo shell model by adopting a large model space consisting of the full $$sd$$ and part of the $$pf$$ orbits. The calculation well reproduces those observables. The result shows that the disappearance of the $$N=20$$ magic number starts already at $$N=18$$ and that the magicity completely disappears for the $$N=19$$ isotone $$^{30}$$Na. This is in sharp contrast to previous consensus that the magic number disappears at $$N=20$$ and beyond. This early onset of disappearance indicates that the $$N=20$$ shell gap considerably narrows in Na isotopes compared to stable nuclei near $$^{40}$$Ca.

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