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Magnetic dipole response of the Tm-169 nucleus

机译:TM-169核的磁偶极响应

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摘要

The magnetic dipole (M1) response of the Tm-169 nucleus is investigated from a theoretical point of view. The theoretical tool used in this study is the Rotational Invariant Quasiparticle Phonon Nuclear Model (RI-QPNM) which gives a possibility to eliminate spurious contributions in the M1 spectrum. In the frame-work of this model, both the low-lying and high-lying parts of the M1 excitation spectrum of Tm-169 are calculated. The result shows that the low-lying excitations have almost pure orbital character and can be interpreted as scissors mode, whereas the high-lying transitions can be read as spin-flip mode because of its spin nature. The reduced transition probability summed up in the energy range 2-4 MeV is found to be B(M1 up arrow) = 3.040 mu(2)(N) which agrees with the available experimental data. The fragmentation of the low-energy M1 strength is also well reproduced. This is also the first study in which both the low-lying and high-lying M1 spectrum of the Tm-169 nucleus is theoretically investigated. (C) 2018 Elsevier B.V. All rights reserved.
机译:从理论的观点来研究TM-169核的磁偶极子(M1)响应。本研究中使用的理论工具是旋转不变的Quasiparticle声子核模型(RI-QPNM),其能够消除M1光谱中的虚假贡献。在该模型的帧工作中,计算TM-169的M1激励谱的低位和高位部分。结果表明,低洼的激励具有几乎纯粹的轨道特性,并且可以解释为剪刀模式,而高位过渡可以被读为自旋性质,而是旋转模式。在能量范围2-4MeV中汇总的减小的过渡概率被发现为B(M1上箭头)=3.040μm(2)(n),其与可用的实验数据一致。低能量M1强度的碎片也很好地再现。这也是理论上研究了TM-169核的低位和高位M1光谱的第一研究。 (c)2018年elestvier b.v.保留所有权利。

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