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首页> 外文期刊>The Journal of Chemical Physics >Factorized molecular wave functions: Analysis of the nuclear factor
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Factorized molecular wave functions: Analysis of the nuclear factor

机译:分解分子波函数:核因子分析

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The exact factorization of molecular wave functions leads to nuclear factors which should be nodeless functions. We reconsider the case of vibrational perturbations in a diatomic species, a situation usually treated by combining Born-Oppenheimer products. It was shown [R. Lefebvre, J. Chem. Phys. 142, 074106 (2015)] that it is possible to derive, from the solutions of coupled equations, the form of the factorized function. By increasing artificially the interstate coupling in the usual approach, the adiabatic regime can be reached, whereby the wave function can be reduced to a single product. The nuclear factor of this product is determined by the lowest of the two potentials obtained by diagonalization of the potential matrix. By comparison with the nuclear wave function of the factorized scheme, it is shown that by a simple rectification, an agreement is obtained between the modified nodeless function and that of the adiabatic scheme. (C) 2015 AIP Publishing LLC.
机译:分子波函数的精确分解会导致核因子,而核因子应该是无节点函数。我们重新考虑了双原子物种中振动扰动的情况,通常通过组合Born-Oppenheimer产品来处理这种情况。它显示[R。 Lefebvre,化学杂志。物理142,074106(2015)],从耦合方程的解中可以得出因式分解函数的形式。通过在通常的方法中人为地增加状态间的耦合,可以达到绝热状态,从而可以将波函数减小为一个乘积。该乘积的核因子由电势矩阵的对角化获得的两个电势中的最低者确定。通过与因式分解方案的核波函数进行比较,表明通过简单的校正,可以在修改后的无节点函数和绝热方案之间获得一致。 (C)2015 AIP Publishing LLC。

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