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Kinetic energy density study of confined noninteracting fermions: The importance of the angular momentum

机译:约束非相互作用费米子的动能密度研究:角动量的重要性

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In this work we present a study of the kinetic energy density of an arbitrary number of noninteracting fermions confined in a Coulombic potential. We present the results for the total kinetic energy and the kinetic energy density using three simple but representative functionals: Thomas-Fermi, von Weizsaker, and the second order gradient expansion approximation. In order to assess their quality, the deviation of the kinetic energy density of every functional is measured through a parameter that reflects the quality of the functionals in a better way than their relative errors (for that reason, we call it quality factor). Trying to understand the performance of the different functionals we study degenerate states with the same energy but different angular momenta and densities. Therefore, the functionals' ability to capture the effects of each density corresponding to the different angular momenta is discussed, as well as the trends of these contributions.
机译:在这项工作中,我们对限制在库仑势中的任意数量的非相互作用费米子的动能密度进行了研究。我们使用三个简单但有代表性的函数给出了总动能和动能密度的结果:托马斯·费米(Thomas-Fermi),冯·魏兹克(von Weizsaker)和二阶梯度展开近似。为了评估它们的质量,每个参数的动能密度的偏差通过一个参数来测量,该参数以比其相对误差更好的方式反映了这些函数的质量(因此,我们将其称为质量因数)。为了理解不同功能的性能,我们研究了具有相同能量但角动量和密度不同的简并状态。因此,讨论了功能捕获对应于不同角力矩的每种密度的影响的能力,以及这些贡献的趋势。

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