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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Rovibrational energy levels of hydrogen peroxide, studied by MULTIMODE with a reaction path Hamiltonian
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Rovibrational energy levels of hydrogen peroxide, studied by MULTIMODE with a reaction path Hamiltonian

机译:用反应路径哈密顿量通过MULTIMODE研究的过氧化氢的旋转振动能级

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Recently. Carter and Handy [J. Chem. Phys. 113 (2000) 987] have introduced the theory of the reaction path Hamiltonian (RPH) [J. Chem. Phys. 72 (1980) 99] into the variational scheme MULTIMODE, for the calculation of the J = 0 vibrational levels of polyatomic molecules, which have a single large-amplitude motion. In this theory the reaction path coordinate s becomes the fourth dimension of the moment-of-inertia tensor, and must be treated separately from the remaining 3N - 7 normal coordinates in the MULTIMODE program. In the modified program, complete integration is performed over s, and the M-mode MULTIMODE coupling approximation for the evaluation of the matrix elements applies only to the 3N - 7 normal coordinates.In this paper the new algorithm is extended to the calculation of rotational-vibration energy levels (i.e. J > 0) with the RPH, following from our analogous implementation for rigid molecules [Theoret. Chem. Acc. 100 (1998) 191]. The full theory is given, and all extra terms have been included to give the exact kinetic energy operator. In order to validate the new code, we report studies on hydrogen peroxide (H2O2), where the reaction path is equivalent to torsional motion. H2O2 has previously been studied variationally using a valence coordinate Hamiltonian; complete agreement for calculated rovibrational levels is obtained between the previous results and those from the new code, using the identical potential surface. MULTIMODE is now able to calculate rovibrational levels for polyatomic molecules which have one large-amplitude motion. (C) 2003 Elsevier B.V. All rights reserved.
机译:最近。卡特和汉迪[J.化学物理113(2000)987]引入了反应路径理论哈密顿量[RPH] [J.化学物理72(1980)99]引入变分方案MULTIMODE,用于计算具有单个大振幅运动的多原子分子的J = 0振动能级。在此理论中,反应路径坐标s变为惯性矩张量的第四维,并且必须与MULTIMODE程序中其余的3N-7法向坐标分开处理。在修改后的程序中,对s进行了完全积分,并且用于评估矩阵元素的M模式MULTIMODE耦合逼近仅适用于3N-7法向坐标。 RPH的振动能量水平(即J> 0),来自我们对刚性分子的类似实现[Theoret。化学累积100(1998)191]。给出了完整的理论,并包括了所有额外的术语以给出确切的动能算子。为了验证新规范,我们报告了对过氧化氢(H2O2)的研究,其中的反应路径等同于扭转运动。以前已经使用价坐标哈密顿量对H2O2进行了变化研究。使用相同的潜在表面,可以在先前结果与新代码的结果之间获得计算出的振动水平的完全一致。 MULTIMODE现在能够计算具有一个大振幅运动的多原子分子的振动水平。 (C)2003 Elsevier B.V.保留所有权利。

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