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Bound-state energy of double magic number plus one nucleon nuclei with relativistic mean-field approach

机译:相对论平均场法双幻数加一个核子核的束缚态能

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In this work, we have obtained energy levels and charge radius for the $eta$-stability line nucleus, in relativistic shell model. In this model, we considered a close shell for each nucleus containing double magicnumber and a single nucleon energy level. Here we have taken $^{41}$Ca with a single neutron in the $^{40}$Ca core as an illustrative example. Then we have selected the Eckart plus Hulthen potentials for interaction between the coreand the single nucleon. By using parametric Nikiforova€“Uvarov (PNU) method, we have calculated the energy values and wave function. Finally, we have calculated the charge radius for 17O, $^{41}$Ca, $^{49}$Ca and $^{57}$Ni. Our results are in agreement with experimental values and hence this model can be applied for similar nuclei.
机译:在这项工作中,我们在相对论壳模型中获得了$-稳定线核的能级和电荷半径。在此模型中,我们考虑到每个核的密壳,其中每个核包含双幻数和单个核子能级。在此,我们以$ ^ {40} $ Ca堆芯中的单个中子中的$ ^ {41} $ Ca为例。然后,我们选择了Eckart加Hulthen势用于核心与单个核子之间的相互作用。通过使用参数Nikiforova?Uvarov(PNU)方法,我们计算了能量值和波动函数。最后,我们计算了17O,$ ^ {41} $ Ca,$ ^ {49} $ Ca和$ ^ {57} $ Ni的电荷半径。我们的结果与实验值一致,因此该模型可用于相似的原子核。

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