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Journal Articles

Large collectivity in $$^{29}$$Ne at the boundary of the island of inversion

Revel, A.*; Wu, J.*; Iwasaki, Hironori*; Ash, J.*; Bazin, D.*; Brown, B. A.*; Chen, J.*; Elder, R.*; Farris, P.*; Gade, A.*; et al.

Physics Letters B, 838, p.137704_1 - 137704_7, 2023/03

no abstracts in English

Journal Articles

In-beam $$gamma$$-ray spectroscopy of $$^{32}$$Mg via direct reactions

Kitamura, Noritaka*; Wimmer, K.*; Miyagi, Takayuki*; Poves, A.*; Shimizu, Noritaka*; Tostevin, J. A.*; Bader, V. M.*; Bancroft, C.*; Barofsky, D.*; Baugher, T.*; et al.

Physical Review C, 105(3), p.034318_1 - 034318_17, 2022/03

 Times Cited Count:1 Percentile:54.36(Physics, Nuclear)

no abstracts in English

Journal Articles

Coexisting normal and intruder configurations in $$^{32}$$Mg

Kitamura, Noritaka*; Wimmer, K.*; Poves, A.*; Shimizu, Noritaka*; Tostevin, J. A.*; Bader, V. M.*; Bancroft, C.*; Barofsky, D.*; Baugher, T.*; Bazin, D.*; et al.

Physics Letters B, 822, p.136682_1 - 136682_7, 2021/11

AA2021-0459.pdf:1.01MB

 Times Cited Count:4 Percentile:72.68(Astronomy & Astrophysics)

no abstracts in English

Journal Articles

Cross-shell excitations in $$^{46}$$Ca studied with fusion reactions induced by a reaccelerated rare isotope beam

Ash, J.*; Iwasaki, Hironori*; Mijatovi$'c$, T.*; Budner, T.*; Elder, R.*; Elman, B.*; Friedman, M.*; Gade, A.*; Grinder, M.*; Henderson, J.*; et al.

Physical Review C, 103(5), p.L051302_1 - L051302_6, 2021/05

 Times Cited Count:3 Percentile:48.27(Physics, Nuclear)

no abstracts in English

Journal Articles

Structure of $$^{30}$$Mg explored via in-beam $$gamma$$-ray spectroscopy

Kitamura, Noritaka*; Wimmer, K.*; Shimizu, Noritaka*; Bader, V. M.*; Bancroft, C.*; Barofsky, D.*; Baugher, T.*; Bazin, D.*; Berryman, J. S.*; Bildstein, V.*; et al.

Physical Review C, 102(5), p.054318_1 - 054318_13, 2020/11

AA2020-0765.pdf:4.4MB

 Times Cited Count:2 Percentile:46.04(Physics, Nuclear)

no abstracts in English

Journal Articles

One-neutron pickup into $$^{49}$$Ca; Bound neutron $$g_{9/2}$$ spectroscopic strength at $$N$$ = 29

Gade, A.*; Tostevin, J. A.*; Bader, V. M.*; Baugher, T.*; Bazin, D.*; Berryman, J. S.*; Brown, B. A.*; Hartley, D. J.*; Lunderberg, E.*; Recchia, F.*; et al.

Physical Review C, 93(3), p.031601_1 - 031601_5, 2016/03

AA2015-0859.pdf:0.32MB

 Times Cited Count:14 Percentile:70.72(Physics, Nuclear)

no abstracts in English

Journal Articles

Identification of deformed intruder states in semi-magic $$^{70}$$Ni

Chiara, C. J.*; Weisshaar, D.*; Janssens, R. V. F.*; Tsunoda, Yusuke*; Otsuka, Takaharu*; Harker, J. L.*; Walters, W. B.*; Recchia, F.*; Albers, M.*; Alcorta, M.*; et al.

Physical Review C, 91(4), p.044309_1 - 044309_10, 2015/04

 Times Cited Count:36 Percentile:91.68(Physics, Nuclear)

The neutron-rich isotope $$^{70}$$Ni was produced by multi-nucleon transfer reactions of $$^{70}$$Zn in the Argonne National Laboratory, and an in-beam $$gamma$$-ray experiment were performed using the GRETINA array. The $$2^+_2$$ and $$4^+_2$$ levels of $$^{70}$$Ni were observed for the first time. Those levels are regarded as large deformed states associated with proton excitation from the $$f_{7/2}$$ orbit because they cannot be reproduced by a shell-model calculation assuming a small valence space without $$f_{7/2}$$. A theoretical analysis based on the Monte Carlo shell model published in 2014 indicates that those levels corresponds to a prolate deformed band. The present result demonstrates the occurrence of shape coexistence in neutron-rich Ni isotopes other than a known case of $$^{68}$$Ni, and confirms the predictive power of the Monte Carlo shell-model calculation.

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:21 Percentile:75.65(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:38 Percentile:88.35(Physics, Nuclear)

no abstracts in English

Journal Articles

Intruder configurations in the A=33 isobars; $$^{33}$$Mg and $$^{33}$$Al

Tripathi, V.*; Tabor, S. L.*; Mantica, P. F.*; Utsuno, Yutaka; Bender, P.*; Cook, J.*; Hoffman, C. R.*; Lee, S.*; Otsuka, Takaharu*; Pereira, J.*; et al.

Physical Review Letters, 101(14), p.142504_1 - 142504_4, 2008/10

 Times Cited Count:51 Percentile:86.49(Physics, Multidisciplinary)

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:25 Percentile:79.15(Physics, Nuclear)

no abstracts in English

Journal Articles

Excited intruder states in $$^{32}$$Mg

Tripathi, V.*; Tabor, S. L.*; Bender, P.*; Hoffman, C. R.*; Lee, S.*; Pepper, K.*; Perry, M.*; Mantica, P.*; Cook, J. M.*; Pereira, J.*; et al.

Physical Review C, 77(3), p.034310_1 - 034310_8, 2008/03

 Times Cited Count:31 Percentile:83.3(Physics, Nuclear)

Excited states in $$^{32}$$Mg have been observed from a $$beta$$-decay experiment of $$^{32}$$Na which was performed at National Superconducting Cyclotron Laboratory in Michigan State University. The 2.1 MeV state proposed previously was denied because the corresponding $$gamma$$ ray is found to be located elsewhere. New level scheme is proposed and compared with the Monte Carlo shell model by JAEA. The ground state of $$^{32}$$Na appears to be a negative parity states from the decay pattern and the calculation. We suggested that the configuration of the states which are strongly populated via the $$beta$$ decay is 3p-3h, since the ground state of the parent nucleus is most likely 2p-3h character.

Journal Articles

Competition between normal and intruder states inside the "island of inversion"

Tripathi, V.*; Tabor, S. L.*; Mantica, P. F.*; Utsuno, Yutaka; Bender, P.*; Cook, J. M.*; Hoffman, C. R.*; Lee, S.*; Otsuka, Takaharu*; Pereira, J.*; et al.

Physical Review C, 76(2), p.021301_1 - 021301_5, 2007/08

 Times Cited Count:26 Percentile:82.02(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:75 Percentile:90.28(Physics, Multidisciplinary)

no abstracts in English

14 (Records 1-14 displayed on this page)
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