Takahashi Satoshi, Takatsuka Kazuo
Department of Basic Science, Graduate School of Arts and Sciences, University of Tokyo, Komaba, 153-8902 Tokyo, Japan.
J Chem Phys. 2006 Apr 14;124(14):144101. doi: 10.1063/1.2173997.
The validity range of the Born-Oppenheimer (BO) approximation is studied with respect to the variation of the mass (m) of negatively charged particle by substituting an electron (e) with muon (mu) and antiproton (p) in hydrogen molecule cation. With the use of semiclassical quantization applied to these (ppe), (ppmu), and (ppp) under a constrained geometry, we estimate the energy difference of the non-BO vibronic ground state from the BO counterpart. It is found that the error in the BO approximation scales to the power of 3/2 to the mass of negative particles, that is, m(1.5). The origin of this clear-cut relation is analyzed based on the original perturbation theory due to Born and Oppenheimer, with which we show that the fifth order term proportional to m(5/4) is zero and thereby the first correction to the BO approximation should arise from the sixth order term that is proportional to m(6/4). Therefore, the validity range of the Born-Oppenheimer approximation is wider than that often mistakenly claimed to be proportional to m(1/4).
通过在氢分子阳离子中用μ子(mu)和反质子(p)取代电子(e),研究了玻恩 - 奥本海默(BO)近似的有效性范围随带负电粒子质量(m)变化的情况。在受限几何结构下,对这些(ppe)、(ppmu)和(ppp)应用半经典量子化,我们估算了非BO振转基态与BO对应态之间的能量差。结果发现,BO近似中的误差与负粒子质量的3/2次幂成正比,即m(1.5)。基于玻恩和奥本海默的原始微扰理论分析了这种明确关系的起源,由此我们表明与m(5/4)成正比的五阶项为零,因此对BO近似的首次修正应来自与m(6/4)成正比的六阶项。所以,玻恩 - 奥本海默近似的有效性范围比通常错误认为的与m(1/4)成正比的范围更宽。