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Description of nuclear systems with a self-consistent configuration-mixing approach. Ⅱ. Application to structure and reactions in even-even sd-shell nuclei

机译:具有自一致配置混合方法的核系统的描述。 Ⅱ。在偶数SD-shell核中的结构和反应的应用

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Background: The variational multiparticle-multihole configurationmixing approach to nuclei has been proposed about a decade ago. While the first applications followed rapidly, the implementation of the full formalism of this method has only been recently completed and applied in C. Robin, N. Pillet, D. Pena Arteaga, and J.-F. Berger, [Phys. Rev. C 93, 024302 (2016)] to ~(12)C as a test-case. Purpose: The main objective of the present paper is to carry on the study that was initiated in that reference, in order to put the variational multiparticle-multihole configuration mixing method to more stringent tests. To that aim we perform a systematic study of even-even sd-shell nuclei. Method: The wave function of these nuclei is taken as a configurationmixing built on orbitals of the sd-shell, and both the mixing coefficients of the nuclear state and the single-particle wave functions are determined consistently from the same variational principle. As in the previous works, the calculations are done using the D1S Gogny force. Results: Various ground-state properties are analyzed. In particular, the correlation content and composition of the wave function as well as the single-particle orbitals and energies are examined. Binding energies and charge radii are also calculated and compared to experiment. The description of the first excited state is also examined and the corresponding transition densities are used as input for the calculation of reaction processes such as inelastic electron and proton scattering. Special attention is paid to the effect of the optimization of the single-particle states consistently with the correlations of the system. Conclusions: The variational multiparticle-multihole configuration mixing approach is systematically applied to the description of even-even sd-shell nuclei. Globally, the results are satisfying and encouraging. In particular, charge radii and excitation energies are nicely reproduced. However, the chosen valence-space truncation scheme precludes achieving maximum collectivity in the studied nuclei. Further refinement of the method and a bettersuited interaction are necessary to remedy this situation.
机译:背景:大约十年前提出了对核的变分型多孔配置混合方法。虽然第一个申请迅速追随,但最近才完成该方法的完整形式主义的实施,并应用于C. Robin,N.Pilet,D.Pena Arteaga和J.-F。伯杰,[物理。 Rev. C 93,024302(2016)]至〜(12)C作为测试用例。目的:本文的主要目的是继续在该参考文献中启动的研究,以便将变分式多粒子 - 多孔配置混合方法置于更严格的测试。对于该目的,我们对均匀的SD-Shell核进行系统研究。方法:将这些核的波函数作为基于SD-Shell的轨道构建的配置混合,并且核状态的混合系数和单粒子波函数的混合系数由相同的变分原理一致地确定。与之前的作品一样,使用D1S Gogny Force完成计算。结果:分析了各种地线特性。特别地,检查了波函数的相关含量和组成以及单粒子轨道和能量。还计算结合能量和电荷半径并与实验相比。还检查了第一激发态的描述,并且相应的过渡密度用作计算反应过程,例如无弹性电子和质子散射。通过系统的相关性,特别注意单粒子状态的优化效果。结论:各自的变分式多孔 - 多孔配置混合方法被系统地应用于偶末级溶液核的描述。在全球范围内,结果令人满意和令人鼓舞。特别地,充电半径和激发能量很好地再现。然而,所选择的价 - 空间截断方案妨碍在研究中实现了最大的核。进一步改进方法和贝德氏互动是为了解决这种情况。

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  • 来源
    《Physical Review C》 |2017年第2017期|044315.1-044315.19|共19页
  • 作者单位

    CEA DAM DIF F-91297 Arpajon France Department of Physics Western Michigan University Kalamazoo Michigan 49008-5252 USA;

    CEA DAM DIF F-91297 Arpajon France;

    CEA DAM DIF F-91297 Arpajon France;

    CEA DAM DIF F-91297 Arpajon France;

    CEA DAM DIF F-91297 Arpajon France;

    CEA DAM DIF F-91297 Arpajon France;

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