论文标题
变形核中的电荷交换偶极激发
Charge-exchange dipole excitations in deformed nuclei
论文作者
论文摘要
背景:电巨型偶极共振(GDR)是最成熟的集体振动模式。但是,与自旋(磁性)偶极共振(SDR)相比,对电荷交换类似物的研究很差。目的:我研究了变形在电荷交换偶极激发上的作用,并将通用特征作为一种激发模式探索。方法:采用核能密度的功能方法来计算基于Skyrme-Kohn-kohn-sham--bogoliubov方法和质子 - 尼顿胶质胶片 - 乘式 - 偶然相近似近似的响应函数。结果:将变形分解为$ k = 0 $,$ k = \ pm 1 $组件发生在电荷改变的通道中,与GDR众所周知的变形大小成正比。但是,对于SDR,不能应用基于原子核几何形状的简单断言来解释每个$ k $ - 组件的振动频率。关于每个组件强度分布的定性论点是根据考虑到核变形的非能量加权总和规则给出的。在低能量中的电偶极强度和低于巨大的共振的浓度在中子富含中子的不稳定核中发现。结论:与中性通道一样,对于电荷交换偶极偶极子的一般发生,变形分裂通常发生。模拟侏儒偶极子共振可以在变形的富含中子的核以及球形系统中出现。
Background: The electric giant-dipole resonance (GDR) is the most established collective vibrational mode of excitation. A charge-exchange analog, however, has been poorly studied in comparison with the spin (magnetic) dipole resonance (SDR). Purpose: I investigate the role of deformation on the charge-exchange dipole excitations and explore the generic features as an isovector mode of excitation. Methods: The nuclear energy-density functional method is employed for calculating the response functions based on the Skyrme--Kohn--Sham--Bogoliubov method and the proton-neuton quasiparticle-random-phase approximation. Results: The deformation splitting into $K=0$ and $K=\pm 1$ components occurs in the charge-changing channels and is proportional to the magnitude of deformation as is well known for the GDR. For the SDR, however, a simple assertion based on geometry of a nucleus cannot be applied for explaining the vibrational frequencies of each $K$-component. A qualitative argument on the strength distributions for each component is given based on the non-energy-weighted sum rules taking nuclear deformation into account. The concentration of the electric dipole strengths in low energy and below the giant resonance is found in neutron-rich unstable nuclei. Conclusions: The deformation splitting occurs generically for the charge-exchange dipole excitions as in the neutral channel. The analog pygmy dipole resonance can emerge in deformed neutron-rich nuclei as well as in spherical systems.