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Analytical shell models for light atoms

机译:光原子的分析壳模型

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A parameter-free analytical representation for the Pauli potential is presented. Minimization with respect to the energy yields a single minimum for H and He atoms, while for atoms from Li to C the energy landscape exhibits two separate minima with the proposed ansatz for the Pauli potential. Here, one of the local minima results in structured electron densities, while the other minimum is connected with an unstructured electron density. For the atoms from N to Ne, only the unstructured solution is found. Total energies resulting from the structured electron density lie in all cases above the corresponding orbital-based Kohn-Sham (KS) data, obtained from a Slater determinant obeying the fermionic nature of the electrons, while the unstructured solution yields total energies far below the KS data. The proposed ansatz seems to allow for both energetic minima: the first one accounting for the fermionic nature of the electrons, while the second one showing Boson-like characteristics. Thus, the proposed ansatz provides new insight for systematic approaches in orbital-free density functional theory.
机译:给出了泡利势的无参数解析表达式。对于H和He原子,能量最小化会产生一个单一的极小值,而对于Li到C的原子,能量景观显示出两个独立的极小值,与泡利势提出的ansatz相比。在这里,一个局部极小值导致结构化电子密度,而另一个极小值与非结构化电子密度相连。对于从N到Ne的原子,只找到了非结构解。结构化电子密度产生的总能量在所有情况下都高于相应的基于轨道的Kohn Sham(KS)数据,该数据是从服从电子费米子性质的Slater行列式获得的,而非结构化解产生的总能量远低于KS数据。提议的ansatz似乎同时考虑了两个能量极小值:第一个考虑了电子的费米子性质,而第二个显示出类似玻色子的特性。因此,提出的ansatz为无轨道密度泛函理论中的系统方法提供了新的见解。

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