TY - JOUR
T1 - Calculation of strongly-coupled rotational bands in terms of the tilted axis cranking model
AU - Ohtsubo, Shin Ichi
AU - Shimizu, Yoshifumi R.
N1 - Funding Information:
We are grateful to the nuclear spectroscopy group at JAERI, especially Dr. Hayakawa, for providing us experimental data before publications. Numerical calculations in this work were performed in part by using the computer system of Research Center for Nuclear Physics (RCNP), Osaka University, and the Yukawa Institute Computer Facility, Kyoto University. This work is supported in part by the Grant-in-Aid for Scientific Research from the Japan Ministry of Education, Culture, Sports, Science and Technology (No. 14540269).
PY - 2003/2/10
Y1 - 2003/2/10
N2 - Recently observed strongly-coupled rotational bands associated with the v[505]11/2 - quasiparticle state are studied by means of a microscopic tilted axis cranking (TAC) model. The results of calculation for the routhians and the B(M1)/B(E2) ratios are investigated in the light of other existing models, i.e., the strong-coupling model and the conventional cranking model. It is demonstrated that only the TAC model can successfully reproduce these two observables at the same time. The reason of the success is clarified by making connections between these models.
AB - Recently observed strongly-coupled rotational bands associated with the v[505]11/2 - quasiparticle state are studied by means of a microscopic tilted axis cranking (TAC) model. The results of calculation for the routhians and the B(M1)/B(E2) ratios are investigated in the light of other existing models, i.e., the strong-coupling model and the conventional cranking model. It is demonstrated that only the TAC model can successfully reproduce these two observables at the same time. The reason of the success is clarified by making connections between these models.
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U2 - 10.1016/S0375-9474(02)01356-8
DO - 10.1016/S0375-9474(02)01356-8
M3 - Article
AN - SCOPUS:0037428957
SN - 0375-9474
VL - 714
SP - 44
EP - 62
JO - Nuclear Physics A
JF - Nuclear Physics A
IS - 1-2
ER -