Microscopic analysis of octupole shape phase transitions and critical points in neutron rich actinides

Vaia Prassa
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Abstract

Octupole constrained energy surfaces, and spectroscopic observables of four isotopic chains of: Cm, Cf, Fm and No with neutron numbers 186 N200 are analysed using a collective quadrupole - octupole Hamiltonian (QOCH). The parameters of the Hamiltonian are determined by axially reflection-asymmetric relativistic Hartree-Bogoliubov calculations based on the energy density functional DD-PC1, and a finite-range pairing interaction. The theoretical results suggest quantum phase transitions from non-octupole to octupole deformed shapes and to octupole vibrations with increasing neutron number. 288Cm is possibly close to the critical point of a simultaneous phase transition from spherical to prolate deformed and from non-octupole to stable octupole deformed configurations.
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富中子锕系元素八极形相变和临界点的显微分析
用四极-八极哈密顿量(QOCH)对中子数为186 N200的Cm、Cf、Fm和No四种同位素链的八极约束能面和光谱观测结果进行了分析。基于能量密度泛函DD-PC1和有限范围配对相互作用,通过轴向反射-非对称相对论Hartree-Bogoliubov计算确定了哈密顿量的参数。理论结果表明,随着中子数的增加,量子相位从非八极向八极变形转变,并向八极振动转变。288Cm可能接近同时发生从球形到长条形、从非八极到稳定八极形相变的临界点。
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