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Vibration-rotation interactions between overtone and combination levels of asymmetric-top molecules: Application to the infrared spectroscopy of formaldehyde and ketene

机译:不对称顶部分子的泛音和组合水平之间的振动-旋转相互作用:在甲醛和乙烯酮的红外光谱中的应用

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摘要

The conventional vibration -rotation Hamiltonian for an asymmetric-top molecule is rewritten by expanding the elements of the inverse inertial tensor about the equilibrium molecular geometry. The approach allows the identification of terms in the Hamiltonian that couple states differing by two, three, or four vibrational quanta and hence the calculation of dimensioned Coriolis coupling coefficients for interacting fundamental, overtone, and combination levels. The matrix elements that result from the application of the expanded Hamiltonian depend upon the harmonic vibrational wave numbers, equilibrium moments of inertia, Coriolis xiparameters, and the derivatives of the elements of the inertial tensor matrix with respect to each of the normal coordinates. The Coriolis coupling coefficients may be calculated through evaluation of the summations that result from the appropriate terms. The validity of the approach is demonstrated through the calculation of coupling coefficients for interacting levels in formaldehyde and ketene. The uncertainty in the calculated values of the coupling coefficients is typically better than +/-6%, although the values calculated for interactions that involve low-frequency vibrational modes are less reliable. Comparisons are made between the calculated values and experimental results. (C) 2005 American Institute of Physics.
机译:通过扩展逆惯性张量的元素关于平衡分子的几何形状来重写不对称顶部分子的常规振动旋转哈密顿量。该方法可以识别哈密顿量中耦合状态相差两个,三个或四个振动量子的项,从而可以计算基波,泛音和组合级之间相互作用的尺寸科里奥利耦合系数。应用扩展哈密顿量产生的矩阵元素取决于谐波振动波数,平衡惯性矩,科里奥利西参数以及惯性张量矩阵元素相对于每个法线坐标的导数。科里奥利耦合系数可以通过评估适当项得出的总和来计算。通过计算甲醛和乙烯酮中相互作用水平的偶联系数,证明了该方法的有效性。尽管为涉及低频振动模式的相互作用而计算的值可靠性较差,但是耦合系数的计算值的不确定性通常优于+/- 6%。在计算值和实验结果之间进行比较。 (C)2005美国物理研究所。

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