论文标题
迈向化学键的互补表征
Towards Complementary Characterization of the Chemical Bond
论文作者
论文摘要
对单个键的精确讨论需要考虑所涉及的粒子的两粒子波函数。在这里,我们在\ ch {h2}分子的规范示例上严格定义并严格确定固有的共价和连接的特征。这是通过从形成键的电子的两粒子波函数的分析形式开始实现的,在该形式中,我们以明确的方式挑出原子贡献(\ textit {atomicity})。原子性和离子性因素的存在补充了债券的现有属性。这样,随着原子间距离的增加,分子状态向其两原子通讯者的逐渐演变被系统地追踪。实际上,建立了与初始的莫特 - 哈伯原子性(\ textit {mottness})与内在的共价和离子性的直接关系。通过将单个粒子波函数调整与粒子(第二个定量)表示中的两个粒子状态的同时确定的单粒子波函数调整来实现此目标。
A precise discussion of a single bond requires consideration of two-particle wave function for the particles involved. Here we define and determine rigorously the intrinsic covalency and connected characteristics on the canonical example of \ch{H2} molecule. This is achieved by starting from analytic form for the two--particle wave function for electrons forming the bond, in which we single out the atomic contribution (\textit{atomicity}) in an unequivocal manner. The presence the of atomicity and ionicity factors complements the existing attributes of the bond. In this way, a gradual evolution of the molecular state to its two-atomic correspondant is traced systematically with increasing interatomic distance. In effect, a direct relation to the onset of incipient Mott-Hubbard atomicity (\textit{Mottness}) to the intrinsic covalency and ionicity is established. This goal is achieved by combining the single--particle wave function readjustment with a simultaneous determination of two--particle states in the particle (second--quantization) representation.