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首页> 外文期刊>The Journal of Chemical Physics >Non-Born-Oppenheimer treatment of the H_2 Hookean molecule
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Non-Born-Oppenheimer treatment of the H_2 Hookean molecule

机译:H_2 Hookean分子的非Born-Oppenheimer治疗

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We show that the exact non-Born-Oppenheimer Schrodinger equation for the Hookean diatomic molecule H_2 (a two-proton,two-electron system where the electron-proton interaction is harmonic while the proton-proton and electron-electron interactions are Coulombic) can be decoupled into equations describing the relative motion of the electrons,the relative motion of nuclei,the motion of a collective mode representing a three-dimensional harmonic oscillator,and the motion of a free particle expressed as a linear combination of the individual center-of-mass coordinates of the nuclei and electrons.Analytic solutions to the relative motion of electrons can be readily obtained for the given values of the harmonic coupling constant.However,exact analytic solutions to the equation for the relative motion of the nuclei cannot be obtained simultaneously due to the fact that the harmonic constants in these two equations are coupled.For this reason,we present for the relative nuclear motion approximate analytic wave functions,one of them obtained variationally and the other by a series solution where the coefficients are determined recursively.We also explore a variational solution to the Taylor-series expansion of the nuclear interaction potential.Properties of the electronic and nuclear intracule densities are examined at different values of the coupling constant.An interesting result of the present non-Born-Oppenheimer treatment of this harmonic model is the fact that the relative nuclear motion occurs in a highly correlated regime.This leads in a natural way to a spatial localization of the nuclei akin to Wigner electronic crystallization.
机译:我们显示了Hookean双原子分子H_2(两质子,二电子系统,其中电子-质子相互作用为谐波,而质子-质子和电子-电子相互作用为库仑)的确切非Born-Oppenheimer Schrodinger方程可以被分解成描述电子的相对运动,原子核的相对运动,代表三维谐波振荡器的集体模态的运动以及表示为单个重心的线性组合的自由粒子的运动的方程式-原子核和电子的质量坐标。对于给定的谐波耦合常数值,可以轻松获得电子相对运动的解析解。但是,无法同时获得原子核相对运动方程的精确解析解由于这两个方程中的谐波常数是耦合的。因此,我们给出了相对核运动近似值解析波函数,其中一个是变分获得的,另一个是通过级数解的递归确定的。我们还探索了核相互作用势的泰勒级数展开的变分解。电子和核分子密度的性质在不同的耦合常数值下进行检验。目前对该谐波模型进行非Born-Oppenheimer处理的一个有趣结果是,相对核运动发生在高度相关的状态中,这自然地导致了空间核的定位类似于维格纳电子结晶。

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