Deformations and Magnetic Rotations in the 60Ni Nucleus

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Deformations and Magnetic Rotations in the 60Ni Nucleus. / Torres, D. A.; Cristancho, F.; Andersson, Lise-Lotte; Johansson, Emma; Rudolph, Dirk; Fahlander, Claes; Ekman, Jörgen; du Rietz, Rickard; Andreoiu, C.; Carpenter, M. P.; Seweryniak, D.; Zhu, S.; Charity, R. J.; Chiara, C. J.; Hoel, C.; Pechenaya, O. L.; Reviol, W.; Sarantites, D. G.; Sobotka, L. G.; Baktash, C.; Yu, C. -H.; Carlsson, B. G.; Ragnarsson, I.

I: Physical Review C (Nuclear Physics), Vol. 78, Nr. 5, 054318, 2008.

Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

Harvard

Torres, DA, Cristancho, F, Andersson, L-L, Johansson, E, Rudolph, D, Fahlander, C, Ekman, J, du Rietz, R, Andreoiu, C, Carpenter, MP, Seweryniak, D, Zhu, S, Charity, RJ, Chiara, CJ, Hoel, C, Pechenaya, OL, Reviol, W, Sarantites, DG, Sobotka, LG, Baktash, C, Yu, C-H, Carlsson, BG & Ragnarsson, I 2008, 'Deformations and Magnetic Rotations in the 60Ni Nucleus', Physical Review C (Nuclear Physics), vol. 78, nr. 5, 054318. https://doi.org/10.1103/PhysRevC.78.054318

APA

CBE

Torres DA, Cristancho F, Andersson L-L, Johansson E, Rudolph D, Fahlander C, Ekman J, du Rietz R, Andreoiu C, Carpenter MP, Seweryniak D, Zhu S, Charity RJ, Chiara CJ, Hoel C, Pechenaya OL, Reviol W, Sarantites DG, Sobotka LG, Baktash C, Yu C-H, Carlsson BG, Ragnarsson I. 2008. Deformations and Magnetic Rotations in the 60Ni Nucleus. Physical Review C (Nuclear Physics). 78(5). https://doi.org/10.1103/PhysRevC.78.054318

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Torres, D. A. ; Cristancho, F. ; Andersson, Lise-Lotte ; Johansson, Emma ; Rudolph, Dirk ; Fahlander, Claes ; Ekman, Jörgen ; du Rietz, Rickard ; Andreoiu, C. ; Carpenter, M. P. ; Seweryniak, D. ; Zhu, S. ; Charity, R. J. ; Chiara, C. J. ; Hoel, C. ; Pechenaya, O. L. ; Reviol, W. ; Sarantites, D. G. ; Sobotka, L. G. ; Baktash, C. ; Yu, C. -H. ; Carlsson, B. G. ; Ragnarsson, I. / Deformations and Magnetic Rotations in the 60Ni Nucleus. I: Physical Review C (Nuclear Physics). 2008 ; Vol. 78, Nr. 5.

RIS

TY - JOUR

T1 - Deformations and Magnetic Rotations in the 60Ni Nucleus

AU - Torres, D. A.

AU - Cristancho, F.

AU - Andersson, Lise-Lotte

AU - Johansson, Emma

AU - Rudolph, Dirk

AU - Fahlander, Claes

AU - Ekman, Jörgen

AU - du Rietz, Rickard

AU - Andreoiu, C.

AU - Carpenter, M. P.

AU - Seweryniak, D.

AU - Zhu, S.

AU - Charity, R. J.

AU - Chiara, C. J.

AU - Hoel, C.

AU - Pechenaya, O. L.

AU - Reviol, W.

AU - Sarantites, D. G.

AU - Sobotka, L. G.

AU - Baktash, C.

AU - Yu, C. -H.

AU - Carlsson, B. G.

AU - Ragnarsson, I.

PY - 2008

Y1 - 2008

N2 - Data from three experiments using the heavy-ion fusion evaporation-reaction Ar-36+Si-28 have been combined to study high-spin states in the residual nucleus Ni-60, which is populated via the evaporation of four protons from the compound nucleus Ge-64. The GAMMASPHERE array was used for all the experiments in conjunction with a 4 pi charged-particle detector arrays (MICROBALL, LUWUSIA) and neutron detectors (NEUTRON SHELL) to allow for the detection of. rays in coincidence with the evaporated particles. An extended Ni-60 level scheme is presented, comprising more than 270 gamma-ray transitions and 110 excited states. Their spins and parities have been assigned via directional correlations of gamma rays emitted from oriented states. Spherical shell-model calculations in the fp-shell characterize some of the low-spin states, while the experimental results of the rotational bands are analyzed with configuration-dependent cranked Nilsson-Strutinsky calculations.

AB - Data from three experiments using the heavy-ion fusion evaporation-reaction Ar-36+Si-28 have been combined to study high-spin states in the residual nucleus Ni-60, which is populated via the evaporation of four protons from the compound nucleus Ge-64. The GAMMASPHERE array was used for all the experiments in conjunction with a 4 pi charged-particle detector arrays (MICROBALL, LUWUSIA) and neutron detectors (NEUTRON SHELL) to allow for the detection of. rays in coincidence with the evaporated particles. An extended Ni-60 level scheme is presented, comprising more than 270 gamma-ray transitions and 110 excited states. Their spins and parities have been assigned via directional correlations of gamma rays emitted from oriented states. Spherical shell-model calculations in the fp-shell characterize some of the low-spin states, while the experimental results of the rotational bands are analyzed with configuration-dependent cranked Nilsson-Strutinsky calculations.

U2 - 10.1103/PhysRevC.78.054318

DO - 10.1103/PhysRevC.78.054318

M3 - Article

VL - 78

JO - Physical Review C

JF - Physical Review C

SN - 2469-9985

IS - 5

M1 - 054318

ER -