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Microscopic investigation on the existence of transverse wobbling under the effect of rotational alignment: TheNd136case
Physical Review C ( IF 3.2 ) Pub Date : 2021-06-16 , DOI: 10.1103/physrevc.103.064319
Fang-Qi Chen , C. M. Petrache

The even- and odd-spin two-quasiparticle yrast bands in Nd136 are investigated with the triaxial projected shell model, focusing on the possible interpretation as transverse wobbling. With the experimental observables reproduced reasonably, the conditions under which the wobbling approximation is valid are examined via the angular momentum geometry and the configuration components extracted from the microscopic wave functions. The impact of the rotational alignment of the quasiparticles on the scenario of transverse wobbling is emphasized. It turns out that the n=0 band of the wobbling candidate is more affected than the n=1 one, which tends to go against the decreasing trend of the wobbling energy expected in the transverse case.

中文翻译:

旋转对准作用下存在横向摆动的显微研究:TheNd136case

偶数和奇数自旋双准粒子带 136使用三轴投影壳模型进行研究,重点是可能的解释为横向摆动。通过合理再现实验观测值,通过角动量几何和从微观波函数中提取的配置分量来检查摆动近似有效的条件。强调了准粒子的旋转排列对横向摆动场景的影响。事实证明,n=0 摆动候选人的乐队比 n=1 一,这往往与横向情况下预期的摆动能量的下降趋势背道而驰。
更新日期:2021-06-16
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