论文标题

形状共存与量子相变之间的微妙联系。 ZR盒

The subtle connection between shape coexistence and quantum phase transition. The Zr case

论文作者

García-Ramos, J. E., Heyde, K.

论文摘要

背景:ZR区域的特征是核的基态结构发生了非常快速的变化。特别是,从$^{98} $ zr到$^{100} $ ZR时变形的开始是核图表中有史以来最快的。已经探测了实验和理论上的探测,ZR同位素的某些低较低的激发态与基态不同。 目的:我们打算在基态形状的突然变化(即存在量子相变的存在)与存在非常不同变形的共存状态的光谱中的存在(即形状共存的存在)之间存在相互作用。 方法:我们依靠使用配置混合(IBM-CM)的交互玻色子模型的先前计算,该模型详细介绍了$^{96-110} $ ZR的光谱属性。该IBM-CM计算允许计算平均场能表面,波函数以及与形状共存或量子相变的任何其他可观察到的可观察到的。 结果:我们获得了能量表面和变形参数$β$的平衡值,波函数的U(5)分解和状态的密度。 结论:我们确认ZR是量子相变的一个明显示例,该量子源于两个构型的穿越,并具有非常不同的变形程度。此外,我们观察到入侵者的配置如何表现出自己的演变,这也类似于量子相变。

Background: Zr region is characterized by very rapid changes in the ground state structure of the nuclei. In particular, the onset of deformation when passing from $^{98}$Zr to $^{100}$Zr is one of the fastest ever observed in the nuclear chart. It has been probed both experimental and theoretically that certain low-lying excited states of Zr isotopes own different shapes than the ground state. Purpose: We intend to disentangle the interplay between the sudden changes in the ground state shape, i.e., the existence of a quantum phase transition, and the presence in the spectra of coexisting states with very different deformation, i.e., the presence of shape coexistence. Method: We rely on a previous calculation using the Interacting Boson Model with Configuration Mixing (IBM-CM) which reproduces in detail the spectroscopic properties of $^{96-110}$Zr. This IBM-CM calculation allows to compute mean-field energy surfaces, wave functions and any other observable related with the presence of shape coexistence or with a quantum phase transition. Results: We obtain energy surfaces and the equilibrium value of the deformation parameter $β$, the U(5) decomposition of the wave functions and the density of states. Conclusions: We confirm that Zr is a clear example of quantum phase transition that originates from the crossing of two configurations with a very different degree of deformation. Moreover, we observe how the intruder configuration exhibits its own evolution which resembles a quantum phase transition too.

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