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Study of spin polarized nuclear matter and finite nuclei with finite range simple effective interaction

机译:具有有限范围简单有效相互作用的自旋极化核物质与有限核的研究

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摘要

The properties of spin polarized pure neutron matter and symmetric nuclear matter are studied using the finite range simple effective interaction, upon its parametrization revisited. Out of the total twelve parameters involved, we now determine ten of them from nuclear matter, against the nine parameters in our earlier calculation, as required in order to have predictions in both spin polarized nuclear matter and finite nuclei in unique manner being free from uncertainty found using the earlier parametrization. The information on the effective mass splitting in polarized neutron matter of the microscopic calculations is used to constrain the one more parameter, that was earlier determined from finite nucleus, and in doing so the quality of the description of finite nuclei is not compromised. The interaction with the new set of parameters is used to study the possibilities of ferromagnetic and antiferromagnetic transitions in completely polarized symmetric nuclear matter. Emphasis is given to analyze the results analytically, as far as possible, to elucidate the role of the interaction parameters involved in the predictions.
机译:重新讨论了其参数化后,利用有限范围简单有效相互作用研究了自旋极化的纯中子物质和对称核物质的性质。在所涉及的全部十二个参数中,我们现在根据需要从核物质中确定十个参数,而不是我们先前计算中的九个参数,以便以独特的方式对自旋极化核物质和有限核的预测都没有不确定性使用较早的参数化可以找到。微观计算中关于极化中子物质有效质量分裂的信息用于约束一个较早的参数,该参数是早先由有限核确定的,因此不会影响描述有限核的质量。与新参数集的相互作用用于研究完全极化对称核物质中铁磁和反铁磁跃迁的可能性。重点是尽可能分析地分析结果,以阐明预测中涉及的交互参数的作用。

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