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首页> 外文期刊>The Journal of Chemical Physics >Multidimensional infrared spectroscopy for molecular vibrational modes with dipolar interactions, anharmonicity, and nonlinearity of dipole moments and polarizability
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Multidimensional infrared spectroscopy for molecular vibrational modes with dipolar interactions, anharmonicity, and nonlinearity of dipole moments and polarizability

机译:多维红外光谱用于偶极相互作用,非谐性以及偶极矩和极化性的非线性的分子振动模式

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We present an analytical expression for the linear and nonlinear infrared spectra of interacting molecular vibrational motions. Each of the molecular modes is explicitly represented by a classical damped oscillator on an anharmonic multidimensional potential-energy surface. The two essential interactions, the dipole-dipole (DD) and the dipole-induced-dipole (DID) interactions, are taken into account, and each dipole moment and polarizability are expanded to nonlinear order with respect to the nuclear vibrational coordinate. Our analytical treatment leads to expressions for the contributions of anharmonicity, DD and DID interactions, and the nonlinearity of dipole moments and polarizability elements to the one-, two-, and three-dimensional spectra as separated terms, which allows us to discuss the relative importance of these respective contributions. We can calculate multidimensional signals for various configurations of molecules interacting through DD and DID interactions for different material parameters over the whole range of frequencies. We demonstrate that contributions from the DD and DID interactions and anharmonicity are separately detectable through the third-order three-dimensional IR spectroscopy, whereas they cannot be distinguished from each other in either the linear or the second-order IR spectroscopies. The possibility of obtaining the intra- or intermolecular structural information from multidimensional spectra is also discussed. (c) 2005 American Institute of Physics.
机译:我们为相互作用的分子振动运动的线性和非线性红外光谱提供了一种解析表达式。每个分子模式都由非谐多维势能表面上的经典阻尼振荡器明确表示。考虑了两个基本相互作用,即偶极-偶极(DD)和偶极-诱导偶极(DID)相互作用,并且相对于核振动坐标,每个偶极矩和极化率都扩展为非线性顺序。我们的分析处理得出以下表达式:非谐,DD和DID相互作用,以及偶极矩和极化率元素对一维,二维和三维光谱的非线性作为分离的项,这使我们可以讨论相对这些贡献的重要性。我们可以计算在整个频率范围内通过不同材料参数通过DD和DID相互作用而相互作用的分子的各种构型的多维信号。我们证明,通过三阶三维红外光谱可以分别检测到DD和DID相互作用和非谐性的贡献,而在线性或二阶红外光谱中则无法将它们区分开。还讨论了从多维光谱获得分子内或分子间结构信息的可能性。 (c)2005年美国物理研究所。

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