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Pseudospin and spin symmetries in single particle resonant states in Pb isotopes

机译:铅同位素单粒子共振态中的伪自旋和自旋对称性

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Based on the newly developed RMF-CMR theory by combining relativistic mean field (RMF) with complex momentum representation (CMR), we have explored the single particle resonant states, and their pseudospin and spin symmetries for Pb isotopes. The available energies and widths decrease monotonously with the increasing mass number in accompany with clear shell structure including the appearance of magic numberN=184. The extracted pseudospin and spin splittings become smaller for the neutron-richer nuclei. The extent of the splittings depends on the quantum numbers and position of the states lying in mean field. Good pseudospin and spin symmetries are expected in the neutron-rich nuclei and the states with lower orbital momentum and lying near the continuum threshold. Especially, it is found that both lower (upper) components of the every pseudospin (spin) doublet look similar for not only bound states but also resonant states, which confirms the presence of the pseudospin (spin) symmetry although the corresponding energy splitting is slightly large.
机译:基于新开发的RMF-CMR理论,结合相对论平均场(RMF)和复动量表示(CMR),我们研究了Pb同位素的单粒子共振态及其伪自旋和自旋对称性。可利用的能量和宽度随着质量数的增加而单调减少,同时伴随着清晰的壳结构,包括幻数N = 184的出现。对于富中子的核,提取的伪自旋和自旋分裂变小。分裂的程度取决于量子数和平均场中态的位置。在富含中子的核中以及轨道动量较低且处于连续谱阈值附近的状态中,有望获得良好的伪自旋和自旋对称性。尤其是,发现每个伪自旋(自旋)双峰的较低(上部)分量不仅对于束缚态而且在共振态上看起来都相似,这证实了伪自旋(自旋)对称性的存在,尽管相应的能量分裂略有不同。大。

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