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Nuclear collective dynamics within Vlasov approach

机译:弗拉索夫方法中的核集体动力学

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摘要

We discuss, in an investigation based on Vlasov equation, the properties of the isovector modes in nuclear matter and atomic nuclei in relation with the symmetry energy. We obtain numerically the dipole response and determine the strength function for various systems, including a chain of Sn isotopes. We consider for the symmetry energy three parameterizations with density providing similar values at saturation but which manifest very different slopes around this point. In this way we can explore how the slope affects the collective response of finite nuclear systems. We focus first on the dipole polarizability and show that while the model is able to describe the expected mass dependence, A(5/3), it also demonstrates that this quantity is sensitive to the slope parameter of the symmetry energy. Then, by considering the Sn isotopic chain, we investigate the emergence of a collective mode, the Pygmy Dipole Resonance (PDR), when the number of neutrons in excess increases. We show that the total energy-weighted sum rule exhausted by this mode has a linear dependence with the square of isospin I = (N - Z)/A, again sensitive to the slope of the symmetry energy with density. Therefore the polarization effects in the isovector density have to play an important role in the dynamics of PDR. These results provide additional hints in the investigations aiming to extract the properties of symmetry energy below saturation.
机译:在基于Vlasov方程的研究中,我们讨论了核物质和原子核中等矢量模式与对称能量有关的性质。我们从数值上获得了偶极响应,并确定了各种系统(包括一串Sn同位素)的强度函数。我们考虑对称能量的三个参数化,其密度在饱和时提供相似的值,但在此点附近显示出非常不同的斜率。通过这种方式,我们可以探索斜率如何影响有限核系统的集体响应。我们首先关注偶极子的极化率,并表明尽管该模型能够描述预期的质量依赖性A(5/3),但它也表明该数量对对称能量的斜率参数敏感。然后,通过考虑Sn同位素链,当过量的中子数量增加时,我们研究了一种集体模式,即矮小偶极子共振(PDR)的出现。我们表明,用这种模式消耗的总能量加权总和规则与同位旋I =(N-Z)/ A的平方成线性关系,同样对对称能量随密度的斜率敏感。因此,等矢量密度中的极化效应必须在PDR的动力学中起重要作用。这些结果在旨在提取饱和以下对称能量特性的研究中提供了其他提示。

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