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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Pointillist rendering of electron charge and spin density suffices to replicate trends in atomic properties
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Pointillist rendering of electron charge and spin density suffices to replicate trends in atomic properties

机译:电子电荷和自旋密度的点画法渲染足以复制原子特性的趋势

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摘要

The monotonic and non-monotonic variations of atomic properties within and between the rows of the periodic table underlie our understanding of chemistry and accounting for these variations has been a signature strength of quantum mechanics (QM). However, the computational burden of QM motivates the development of more efficient means of describing electrons and reactivity. The recently developed LEWIS. model incorporates lessons learnt from QM into a force field that includes electrons as explicit pseudo-classical particles. Here, we extend LEWIS. across the 2p and 3p elements, and show that it is capable of reproducing both monotonic and non-monotonic variations of chemically important atomic properties in a cost-effective manner. An indicator of the strength of the construct is the ability of pairwise potentials trained on ionization energies and the order of spin configurations to predict atomic polarizabilities. In this manner, some insights of QM are uncoupled from its onerous computational burden.
机译:元素周期表中各行之内和之间的原子特性的单调和非单调变化是我们对化学的理解的基础,并且考虑到这些变化已成为量子力学(QM)的标志性力量。但是,QM的计算负担促使人们开发出更有效的描述电子和反应性的方法。最近开发的LEWIS。该模型将从QM中汲取的经验教训整合到一个力场中,该力场包括电子作为显式的伪经典粒子。在这里,我们扩展LEWIS。跨2p和3p元素,并表明它能够以经济有效的方式重现化学上重要的原子特性的单调和非单调变化。构造强度的指标是在电离能上训练的成对电位的能力以及自旋构型的顺序来预测原子极化率。通过这种方式,QM的一些见解与繁重的计算负担脱钩了。

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