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首页> 外文期刊>The Journal of Chemical Physics >Modified Born-Oppenheimer basis for nonadiabatic coupling: Application to the vibronic spectrum of HD~+
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Modified Born-Oppenheimer basis for nonadiabatic coupling: Application to the vibronic spectrum of HD~+

机译:非绝热耦合的改进Born-Oppenheimer基础:在HD〜+的电子光谱中的应用

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Nonadiabatic matrix elements, when computed using a Born-Oppenheimer (BO) basis, do not vanish asymptotically because the motion of the electrons with the nuclei at large internuclear separations is not taken into account. We apply a method suggested by Delos [Rev. Mod. Phys. 53, 287 (1981)] to include the effect of electron translation factors in a quantum-mechanical framework, thus correcting, the BO basis to incorporate proper boundary conditions. We calculate the nonadiabatic matrix elements for H_2~+ and its isotopic variants. We focus our calculations on HD~+, for which experimental results exist, and calculate its vibronic spectrum. This is the first application of this method to calculate high precision spectroscopic information for molecular systems.
机译:当使用Born-Oppenheimer(BO)计算时,非绝热矩阵元素不会渐近消失,因为未考虑电子在大核间距下与核的运动。我们采用Delos [Rev. Mod。物理53,287(1981)]将电子平移因子的影响包括在量子力学框架中,从而校正了BO基础以纳入适当的边界条件。我们计算了H_2〜+及其同位素变体的非绝热矩阵元素。我们将计算重点放在存在实验结果的HD〜+上,并计算其振动频谱。这是该方法为分子系统计算高精度光谱信息的首次应用。

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