A Hartree-Fock-Bogoliubov Study on the Pairing Correlations of the Isotopes of Cobalt

Nicemon Thomas, Anjana A V, A. Joseph
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Abstract

Background: The phenomena of nucleon pairing could be outlined from the Bethe-Weizäcker semi-empirical formula, from which the nuclear properties, viz. the binding energy, stability, shape etc. could be clearly sketched. Though the pairing correlation seems to be a small correction to the binding energy term, it plays a determinative role in defining the structure of nuclear systems. The addition to the binding energy in turn affects the position of the isotope on the dripline and hence increases the stability. Purpose: To study the effects of pairing on the ground state properties of the isotopes of Cobalt. Methods: We use Hartree-Fock-Bogoliubov (HFB) theory for the study. The general wave functions for the HFB approach are determined from variational principle. The eigen functions for the Hamiltonian are connected with the particle operators through the Bogoliubov transformations. The Hartree-Fock energy is obtained through the minimization of the variational parameter and the HFB equation is solved by iterative diagonalization by restoring the particle number symmetry. Results: The HFB analysis substantiates the effect of pairing correlation on binding energies, neutron and proton pairing energies, neutron and proton pairing gaps and one- and two-neutron separation energies of the Cobalt isotopes. The binding energies and one and two-neutron separation energies match with the experimental values and for pairing energies and pairing gaps, the regions where pairing is significant and the effects of shell closure at the vicinity of magic configuration of neutrons could be recognized. Conclusion: The Hartree-Fock-Bogoliubov calculations of the effects of pairing could be used as an efficient tool to study the nuclear structure. It can be ascertained that pairing plays an important role in determining the ground state properties of atomic nuclei.
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钴同位素配对相关性的Hartree-Fock-Bogoliubov研究
背景:从Bethe-Weizäcker半经验公式可以概括出核子对现象,从中可以清楚地描绘出原子核的结合能、稳定性、形状等性质。虽然配对相关似乎是对结合能项的一个小修正,但它在确定核系统的结构方面起着决定性的作用。增加的结合能反过来影响同位素在滴线上的位置,从而增加稳定性。目的:研究配对对钴同位素基态性质的影响。方法采用Hartree-Fock-Bogoliubov (HFB)理论进行研究。HFB方法的一般波函数是由变分原理确定的。通过Bogoliubov变换将哈密顿算子的本征函数与粒子算子联系起来。通过最小化变分参数得到Hartree-Fock能量,通过恢复粒子数对称,采用迭代对角化方法求解HFB方程。结果:HFB分析证实了配对相关性对钴同位素的结合能、中子和质子配对能、中子和质子配对间隙以及单中子和双中子分离能的影响。结合能、单中子分离能和双中子分离能与实验值吻合,对于配对能和配对间隙,可以识别出配对显著的区域和中子魔位附近的壳层闭合效应。结论:配对效应的Hartree-Fock-Bogoliubov计算可作为研究原子核结构的有效工具。可以确定,配对在决定原子核的基态性质方面起着重要作用。
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