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Theoretical description of two-dimensional vibrational spectroscopy by infrared-infrared-visible sum frequency generation - art. no. 023406

机译:用红外-红外-可见和频产生二维振动光谱的理论描述-艺术没有。 023406

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摘要

The two-dimensional infrared-infrared-visible (IIV) sum frequency generation (SFG) is theoretically considered. IIV-SFG is a two-dimensional extension of the infrared-visible SFG, since it involves two vibrationally resonant infrared fields of which frequencies are experimentally controlled. An additional visible field is used to probe the vibrational coherence dynamics. This IIV-SFG technique can be used in studying intramolecular and intermolecular vibrational interactions in isotropic condensed phases as well as on surfaces and interfaces. Due to the selection rules that are quite different from the one-dimensional vibrational spectroscopies, the IIV-SFG signal intensity is determined by the vibrational anharmonic couplings and nonlinearities of the polarizability and dipole moments with respect to the vibrational coordinates. In particular, fur a model system consisting of two neighboring molecules or subgroups in a macromolecule, how the spatial and structural information can be extracted from the IIV-SFG measurement is discussed. [References: 58]
机译:理论上考虑了二维红外-红外-可见(IIV)和频率生成(SFG)。 IIV-SFG是红外可见SFG的二维扩展,因为它涉及两个振动共振的红外场,其频率是通过实验控制的。附加的可见场用于探测振动相干动力学。该IIV-SFG技术可用于研究各向同性凝聚相以及表面和界面上的分子内和分子间振动相互作用。由于与一维振动光谱学的选择规则完全不同,因此IIV-SFG信号强度由振动非谐耦合以及极化率和偶极矩相对于振动坐标的非线性决定。特别地,对于由大分子中的两个相邻分子或亚组组成的模型系统,讨论了如何从IIV-SFG测量中提取空间和结构信息。 [参考:58]

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