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首页> 外文期刊>The Journal of Chemical Physics >MOLECULAR ROTATIONS IN VIBRONICALLY COUPLED SYSTEMS
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MOLECULAR ROTATIONS IN VIBRONICALLY COUPLED SYSTEMS

机译:振动耦合系统中的分子旋转

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摘要

A new general method to compute rovibronic energy levels and eigenstates in molecules with possibly strong vibronic coupling is presented. The method can be applied to arbitrary coupling mechanisms of electronic potential energy surfaces and is not Limited to a special type of molecule. Explicit criteria for the applicability of the method are derived. To investigate different types of rovibronic interactions, parameter studies for Linear and bilinear EX epsilon Jahn-Teller systems are performed. As an application to a real molecule we investigate the rotational structure of the Li-3 electronic A state. A variety of possible nontrivial effects is found which cannot be explained by rotational-vibrational coupling an a single electronic potential energy surface. Attention is paid to construct explicit effective Hamiltonians describing the findings. The rovibronic motion on potential surfaces with equivalent minima is also discussed in this context. (C) 1996 American Institute of Physics. [References: 95]
机译:提出了一种新的通用方法来计算具有强振动耦合的分子中的转子振动能级和本征态。该方法可以应用于电子势能表面的任意耦合机理,并且不限于特定类型的分子。得出了该方法适用性的明确标准。为了研究不同类型的电子振动相互作用,对线性和双线性EX epsilon Jahn-Teller系统进行了参数研究。作为对实际分子的一种应用,我们研究了Li-3电子A状态的旋转结构。发现了各种可能的非平凡效应,这不能通过旋转振动耦合单个电子势能表面来解释。要注意构建描述发现的明确有效的哈密顿量。在此还讨论了具有等效极小值的潜在表面上的转子振动。 (C)1996年美国物理研究所。 [参考:95]

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