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首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Low-energy dipole strength in even-even Dy-152-(164) isotopes within the quasiparticle random phase approximation (QRPA) including symmetry restoring interactions
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Low-energy dipole strength in even-even Dy-152-(164) isotopes within the quasiparticle random phase approximation (QRPA) including symmetry restoring interactions

机译:在Quasiparticle随机相位近似(QRPA)内的均匀偶 - 152-(164)同位素中的低能量偶极强度,包括对称恢复相互作用

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A systematic study of the low-lying magnetic (M1) and electric dipole (E1) transitions from ground- to 152-164 excited-states in the doubly-even Dy152-164 isotopes has been performed within the framework of the rotational (RI-), translational and Galilean invariant (TGI-) Quasiparticle Random Phase Approximation (QRPA). According to the results of the calculations dipole strength is fragmented over several states in 2-4 MeV interval and as a rule, one-phonon I-pi = 1(+) states are rather fragmented than the one-phonon states with I-pi = 1(-). It is found that even though almost all the M1 strengths are dominated by the orbital motion, the weaker contributions from spin motion plays a relatively major role in shaping the M1 spectra due to its constructive interference with orbital motion in these energies. For Dy-160(,)162(,)164 the calculated total M1 transition strengths, centroid energies of M1 resonance and gamma widths at the energies between 2 and 4 MeV are in fair agreement with relevant experiment data. It has been shown that in addition to the Delta K = 0 E1 transitions there are also E1 transitions with Delta K = 1 in the low-energy E1 spectrum of all the even-even Dy isotopes under investigation. (C) 2018 Elsevier B.V. All rights reserved.
机译:在旋转(RI-)的框架内进行了从地面到152-164个同位素的低位磁性(M1)和电偶极子(E1)转变的系统的系统研究。(RI- ),翻译和加里利莱莱氏不变(TGI-)Quasiparticle随机相位近似(QRPA)。根据计算结果,偶极强度在2-4 mev间隔内分散在几个状态下,通常,单声道i-pi = 1(+)状态比用I-PI与单声道状态分段= 1( - )。结果表明,即使几乎所有M1强度都是由轨道运动主导的,旋转运动的较弱贡献在整形M1光谱方面起着相对重要的作用,这是由于其在这些能量中的轨道运动中的结构性干扰而形成了M1光谱。对于Dy-160(,)162(,)164计算的总M1转变强度,M1谐振的质心能量和在2和4MeV之间的能量的伽马宽度与相关实验数据相当公平。已经表明,除了ΔK= 0 E1过渡之外,还有E1在调查中的所有均匀均匀同位素的低能量E1谱中具有ΔK= 1的E1转变。 (c)2018年elestvier b.v.保留所有权利。

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