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Superheavy nuclei in relativistic effective Lagrangian model

机译:相对论有效拉格朗日模型中的超重核

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摘要

Isotopic and isotonic chains of superheavy nuclei are analyzed to search for spherical double shell closures beyond Z=82 and N=126 within the new effective field theory model of Furnstahl, Serot, and Tang for the relativistic nuclear many-body problem. We take into account several indicators to identify the occurrence of possible shell closures, such as two-nucleon separation energies, two-nucleon shell gaps, average pairing gaps, and the shell correction energy. The effective Lagrangian model predicts N=172 and Z=120 and N=258 and Z=120 as spherical doubly magic superheavy nuclei, whereas N=184 and Z=114 show some magic character depending on the parameter set. The magicity of a particular neutron (proton) number in the analyzed mass region is found to depend on the number of protons (neutrons) present in the nucleus.
机译:分析了超重原子核的同位素和等渗链,以在Furnstahl,Serot和Tang的新有效场论模型中针对相对论核多体问题寻找Z = 82和N = 126以外的球形双壳闭合。我们考虑了几个指标来确定可能的壳闭合的发生,例如两个核子的分离能,两个核子的壳间隙,平均配对间隙和壳校正能。有效的拉格朗日模型预测N = 172和Z = 120以及N = 258和Z = 120为球形双魔术超重核,而N = 184和Z = 114根据参数集显示一些魔术特性。发现在分析的质量区域中特定中子(质子)数的魔力取决于存在于原子核中的质子(中子)数。

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