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Microscopic Study of Band Structures in^(98-102)Sr and^(100-104)Zr Isotopes
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作者 董国香 于少英 +1 位作者 刘艳鑫 沈彩万 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第11期922-926,共5页
The properties of the high spin states of the neutron-rich 98-102Sr and 100-104Zr isotopes have been st udied using the projected shell model. In particular, the upbending phenomenon is investigated for these isotopes... The properties of the high spin states of the neutron-rich 98-102Sr and 100-104Zr isotopes have been st udied using the projected shell model. In particular, the upbending phenomenon is investigated for these isotopes along the yrast line. The results show that the occurrence of upbending phenomenon is attributed to the band crossing between ground state band and 2-qp neutron band having configuration 2vh11/2[-3/2, 5/2], K = 1. Furthermore, the neutron two-quasi-particle structure of side bands in 98SR-102Zr is discussed in this paper. 展开更多
关键词 projected shell model yrast band upbending side band
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Collective rotations of fission isomers in actinide nuclei 被引量:2
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作者 XIE KePing KE WeiYao +4 位作者 LIANG WuYang FU XiMing JIAO ChangFeng PEI JunChen XU FuRong 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第2期189-193,共5页
Using the total-Routhian-surface (TRS) method, the rotational behaviors of fission isomers in the second well of actinide nuclei 234-242U, 236-244pu and 238-246Cm were investigated. The pairing-deformation-frequency... Using the total-Routhian-surface (TRS) method, the rotational behaviors of fission isomers in the second well of actinide nuclei 234-242U, 236-244pu and 238-246Cm were investigated. The pairing-deformation-frequency self-consistent TRS calculations repro- duced reasonably the experimental moments of inertia extracted from spectroscopic data. It is calculated that, in these largely elongated (β2 ≈0.65 and β4≈ 0.03) fission isomers, the ν1/2-[981] neutron and π1/2+[651] proton align simultaneously at rotational frequency hω≈0.4 - 0.6 MeV (corresponding to spin I≈80h), which leads to clear upbending in moments of inertia (MoI's). Our calculations have indicated that the hexadecapole deformation f14 influenced significantly the frequency of the rotational alignment of the proton 1/2+[651] orbit. 展开更多
关键词 fission isomers total Routhian surface moments of inertia upbending ALIGNMENT
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