Fábri Csaba, Czakó Gábor, Tasi Gyula, Császár Attila G
Laboratory of Molecular Spectroscopy, Institute of Chemistry, Eötvös University, P.O. Box 32, H-1518 Budapest 112, Hungary.
J Chem Phys. 2009 Apr 7;130(13):134314. doi: 10.1063/1.3097327.
The effect of an adiabatic approximation, named adiabatic Jacobi correction (AJC) and introduced in J. Chem. Phys. 126, 024102 (2007), was investigated on the complete set of vibrational levels of H(2)(+) and its isotopologues, most importantly on the highest-lying vibrational states of HD(+). In order to perform clamped nuclei calculations employing finite nuclear masses a constrained Hamiltonian has been derived utilizing interparticle coordinates. The Born-Oppenheimer (BO) potential, the adiabatic potential obtained after taking into account the traditional diagonal Born-Oppenheimer correction (DBOC), as well as the AJC-corrected potential have been determined by an accurate fitting to computed energy values. These potentials were included in one-dimensional variational computations and yielded the complete set of energy levels for H(2)(+), D(2)(+), and HD(+). A detailed investigation of the potential and the complete set of vibrational energy levels show the merits and the deficiencies of the BO, DBOC, and AJC treatments. In particular, it is shown that the AJC corrections are systematically smaller and have a different distance dependence than the DBOC corrections. For a large part of the spectrum of H(2)(+) and its isotopologues the adiabatic correction to the vibrational energy levels is smaller than the nonadiabatic correction, the adiabatic DBOC correction has the highest overall accuracy for the prediction of vibrational energy levels, it is surpassed by the AJC correction only for the highest energy levels of HD(+), and thus the use of the AJC correction is clearly the best choice only for states close to the dissociation limit of nonsymmetric isotopologues.
研究了一种绝热近似效应,即绝热雅可比校正(AJC),该效应在《化学物理杂志》126, 024102 (2007) 中被提出,研究对象是H₂⁺及其同位素分子的完整振动能级集,最重要的是HD⁺的最高振动态。为了使用有限核质量进行固定核计算,利用粒子间坐标推导了一个约束哈密顿量。通过对计算得到的能量值进行精确拟合,确定了玻恩 - 奥本海默(BO)势、考虑传统对角玻恩 - 奥本海默校正(DBOC)后得到的绝热势以及AJC校正势。这些势被纳入一维变分计算中,得到了H₂⁺、D₂⁺和HD⁺的完整能级集。对势和完整振动能级集的详细研究展示了BO、DBOC和AJC处理方法的优点和不足。特别是,结果表明AJC校正系统地比DBOC校正小,并且具有不同的距离依赖性。对于H₂⁺及其同位素分子光谱的很大一部分,振动能级的绝热校正小于非绝热校正,绝热DBOC校正在预测振动能级方面具有最高的整体精度,仅在HD⁺的最高能级处被AJC校正超过,因此仅对于接近非对称同位素分子解离极限的态,使用AJC校正显然是最佳选择。