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A microscopic study on shape transition and shape coexistence in superdeformed nuclei

机译:超形核形变和形共存的微观研究

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Superdeformed nuclei at high-spin states in several mass regions are investigated within a microscopic approach using cranked Nilsson-Strutinsky formalism to explore the equilibrium deformations in the ground state and their evolution with spin. Shape transition from normal deformed to superdeformed states with increasing spin is studied and a clear picture of shape coexistence is provided. Detailed information on spin, rotational energy, dynamical moment of inertia, and rotational frequency of superdeformed rotational bands is presented and the general features of superdeformed bands in certain mass regions are outlined. Rotational energy and dynamical moment of inertia are compared with available experimental data and the impact of temperature and pairing on superdeformed configuration are discussed.
机译:在微观方法中,使用曲柄Nilsson-Strutinsky形式主义研究了在多个质量区域中高自旋态的原子核,以探索基态的平衡变形及其随着自旋的演化。研究了随着自旋的增加,从正常变形状态到超变形状态的形状转变,并提供了清晰的形状共存图片。给出了有关自旋,旋转能,惯性动量矩和超变形旋转带的旋转频率的详细信息,并概述了某些质量区域中超变形带的一般特征。将旋转能量和动态惯性矩与可用的实验数据进行了比较,并讨论了温度和配对对超变形构型的影响。

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