Chatzisavvas K Ch, Moustakidis Ch C, Panos C P
Department of Theoretical Physics, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
J Chem Phys. 2005 Nov 1;123(17):174111. doi: 10.1063/1.2121610.
Shannon information entropies in position and momentum spaces and their sum are calculated as functions of Z(2 < or = Z < or = 54) in atoms. Roothaan-Hartree-Fock electron wave functions are used. The universal property S = a + b ln Z is verified. In addition, we calculate the Kullback-Leibler relative entropy, the Jensen-Shannon divergence, Onicescu's information energy, and a complexity measure recently proposed. Shell effects at closed-shell atoms are observed. The complexity measure shows local minima at the closed-shell atoms indicating that for the above atoms complexity decreases with respect to neighboring atoms. It is seen that complexity fluctuates around an average value, indicating that the atom cannot grow in complexity as Z increases. Onicescu's information energy is correlated with the ionization potential. Kullback distance and Jensen-Shannon distance are employed to compare Roothaan-Hartree-Fock density distributions with other densities of previous works.
计算了原子中位置和动量空间的香农信息熵及其总和作为原子序数Z(2≤Z≤54)的函数。使用了罗特汉-哈特里-福克电子波函数。验证了通用性质S = a + b ln Z。此外,我们还计算了库尔贝克-莱布勒相对熵、詹森-香农散度、奥尼塞斯库信息能量以及最近提出的一种复杂度度量。观察到闭壳层原子的壳层效应。复杂度度量在闭壳层原子处显示出局部最小值,表明对于上述原子,相对于相邻原子,复杂度降低。可以看出,复杂度围绕平均值波动,这表明随着Z的增加,原子的复杂度不会增加。奥尼塞斯库信息能量与电离势相关。采用库尔贝克距离和詹森-香农距离将罗特汉-哈特里-福克密度分布与先前工作的其他密度进行比较。