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Octupole response and stability of spherical shape in heavy nuclei

机译:重核中八极响应和球形稳定性

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The isoscalar octupole response of a heavy spherical nucleus is analyzed in a semiclassical model based on the linearized Vlasov equation. The octupole strength function is evaluated with different degrees of approximation. The zero-order fixed-surface response displays a remarkable concentration of strength in the 1homega and 3homega regions, in excellent agreement with the quantum single-particle response. The collective fixed-surface response reproduces both the high- and low-energy octupole resonances, but not the low-lying 3(-) collective states, while the moving-surface response function gives a good qualitative description of all the main features of the octupole response in heavy nuclei. The role of triangular nucleon orbits, that have been related to a possible instability of the spherical shape with respect to octupole-type deformations, is discussed within this model. It is found that, rather than creating instability, the triangular trajectories are the only classical orbits contributing to the damping of low-energy octupole excitations. (C) 2003 Elsevier B.V. All rights reserved. [References: 13]
机译:基于线性化的Vlasov方程,在半经典模型中分析了重球形核的等量八极响应。用不同的近似度评估八极强度函数。零阶固定表面响应在1homega和3homega区域显示出显着的强度集中,与量子单粒子响应非常一致。集体固定表面响应可重现高能量和低能量的八极共振,但不能重现低能量的3(-)集体状态,而移动表面响应函数可很好地定性描述该表面的所有主要特征。重核中的八极响应。在此模型中讨论了三角形核子轨道的作用,该作用与球形相对于八极型变形的可能不稳定性有关。已发现,三角形轨迹不是产生不稳定性,而是唯一有助于衰减低能八极激发的经典轨道。 (C)2003 Elsevier B.V.保留所有权利。 [参考:13]

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