论文标题

探测原子核中猜想的低自旋摇摆带的性质

Probing the nature of the conjectured low-spin wobbling bands in atomic nuclei

论文作者

Guo, S., Zhou, X. H., Petrache, C. M., Lawrie, E. A., Mthembu, S., Fang, Y. D., Wu, H. Y., Wang, H. L., Meng, H. Y., Li, G. S., Qiang, Y. H., Wang, J. G., Liu, M. L., Zheng, Y., Ding, B., Zhang, W. Q., Rohilla, A., Mukhi, K. R., Yang, Y. Y., Ong, H. J., Ma, J. B., Xu, S. W., Bai, Z., Fan, H. L., Huang, J. F., Li, J. H., Xu, J. H., Lv, B. F., Hua, W., Gan, Z. G., Zhang, Y. H.

论文摘要

进动是一种独特的运动,其中旋转体的旋转轴的方向不是固定而是移动的,并且通常存在于宇宙中,从巨星通过微小的原子核存在。原则上,原子核素的进积可以近似地描述为摇摆运动,这是由于旋转和谐波振动的耦合而产生的。最近,据报道,低旋转的一些摇摆条带,这违反了只有在高旋转下才能有效的摇摆近似。在这里,我们探讨了报道的低自旋摇摆带的性质。通过一个新实验,我们证明了$^{187} $ au中的一个频段是由主粒子激发而不是通过摇摆声子激发产生的。我们指出,以前使用的不完美的研究范例将导致对低自旋摇摆带的不可靠鉴定。因此,应开发新的实验方法,以区分可以引起奇数核中观察到的低自旋带的不同激发机制。

Precession is a unique motion in which the orientation of the rotational axis of a rotating body is not fixed but moving, and it generally exists in the Universe from giant stars through tiny atomic nuclei. In principle, the precession of an atomic nuclide can be approximately described as wobbling motion, arising from the coupling of a rotation and a harmonic vibration. Recently, a number of wobbling bands were reported at low spin, which violate the wobbling approximation that can be valid only at high spin. Here we explore the nature of the reported low-spin wobbling bands. Via a new experiment, we demonstrate that one such band in $^{187}$Au is generated by dominant single-particle excitation rather than by the excitation of a wobbling phonon. We point out that the imperfect research paradigm used previously would lead to unreliable identification of low-spin wobbling bands. Consequently, new experimental approaches should be developed to distinguish among the different excitation mechanisms that can give rise to the observed low-spin bands in odd-even nuclei.

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