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首页> 外文期刊>The Journal of Chemical Physics >Electron-electron counterbalance hole in Hartree-Fock theory
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Electron-electron counterbalance hole in Hartree-Fock theory

机译:Hartree-Fock理论中的电子-电子平衡孔

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The electronic extracule density E(R) and its spherical average d(R) are probability densities of finding the center-of-mass vector (r(j)+r(k))/2 and its magnitude (j)+r(k)/2 of any two electrons j and k to be R and R, respectively. Theoretical analysis of spin-orbital-pair contributions E k(R) and d(jk)(R) to the extracule densities shows that within the Hartree-Fock framework, there exists an "electron-electron counterbalance hole" E-jk(0)=d(jk)(0)=0 between two electrons in spin-orbitals j and k with the same spin and the same spatial inversion symmetry, which implies that the center-of-mass vector (or distance) of these electrons cannot be zero or these electrons cannot be exactly at the opposite positions in space with respect to the inversion center. The same is also true in momentum space. The electron-electron counterbalance hole may be considered as a complement to the familiar electron-electron coalescence or Fermi hole for two electrons with the same spin. We also point out that the electron-electron counterbalance and coalescence densities are rigorously proportional for a pair of spin-orbitals with different spins. (C) 1998 American Institute of Physics. [References: 10]
机译:电子外层密度E(R)及其球面平均值d(R)是找到质心矢量(r(j)+ r(k))/ 2及其大小 r(j)+的概率密度两个电子j和k的r(k)/ 2分别为R和R。对自旋轨道对贡献Ek(R)和d(jk)(R)对粒子密度的理论分析表明,在Hartree-Fock框架内,存在一个“电子-电子平衡孔” E-jk(0 )= d(jk)(0)= 0自旋轨道j和k中的两个电子具有相同的自旋和相同的空间反转对称性,这意味着这些电子的质心矢量(或距离)不能为零或这些电子不能精确地位于相对于反转中心的空间相对位置。动量空间也是如此。电子-电子平衡孔可被视为对两个具有相同自旋的电子的电子-电子合并或费米(Fermi)孔的补充。我们还指出,对于具有不同自旋的一对自旋轨道,电子-电子平衡和聚结密度严格成比例。 (C)1998美国物理研究所。 [参考:10]

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