Nonadiabatic quasiparticle description of rotation-particle coupling in triaxial odd–odd nuclei

P. Siwach, P. Arumugam, S. Modi, L. Ferreira, E. Maglione
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引用次数: 6

Abstract

A large wealth of data and a variety of models led to significant progress in understanding the spectra of deformed nuclei. However, a robust theoretical approach, which is less reliant on adjustable parameters is still elusive. Due to the scarcity of data, this drawback gets more pronounced while studying the exotic nuclei. With the motive to overcome this difficulty, we have developed the nonadiabatic quasiparticle approach for the description of rotational states in triaxial deformed odd–odd nuclei. The rotation-particle coupling is carried out utilizing an appropriate basis transformation such that the matrix elements of the odd–odd system can be written in terms of the rotor energies. This provides the advantage of studying the role of core more efficiently as compared to the conventional particle rotor model. The residual interaction between the valence proton and neutron is incorporated in two reliable ways, namely, the constant potential form and the zero-range interaction.
三轴奇-奇核中旋转-粒子耦合的非绝热准粒子描述
大量丰富的数据和各种各样的模型使人们对形变核光谱的理解取得了重大进展。然而,一种较少依赖于可调参数的稳健的理论方法仍然是难以捉摸的。由于数据的缺乏,这一缺陷在研究奇异核时变得更加明显。为了克服这一困难,我们发展了非绝热的准粒子方法来描述三轴奇-奇形变核的旋转态。利用适当的基变换进行旋转-粒子耦合,使得奇奇系统的矩阵元素可以用转子能量表示。与传统的颗粒转子模型相比,这提供了更有效地研究铁心作用的优势。价质子和中子之间的剩余相互作用有两种可靠的方式,即恒势形式和零距离相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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