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Ultraviolet resonance Raman spectroscopy: studies of depolarization dispersion and strong vibronic coupling

机译:紫外线共振拉曼光谱:去极化分散和强大振动耦合的研究

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The application of ultraviolet resonance Raman spectroscopy to the electronic excitations of the simple $pi@-electron systems butadiene, cyclopentadiene, benzene, acetylene, dimethylacetylene (2-butyne) and diacetylene (1,3-butadiyne) is described. Raman scattering resonant with electronic excitations of these species provides new information that permits a check on the interpretation of the corresponding absorption transitions. The determination of the depolarization ratio for Raman scattering of totally symmetric modes and its variation with excitation wavelength is shown to be a useful way to demonstrate that an electronic band consists of two or more transitions with orthogonal polarization components. Raman spectra of acetylene, dimethyl-acetylene, and benzene show evidence of strong vibronic coupling. A quantitative analysis has been developed for the benzene case where pseudo-Jahn-Teller distortion is observed. The general utility of resonance Raman spectroscopy using ultraviolet radiation as a tool in molecular spectroscopy is illustrated with these studies. Highly excited vibrational levels not seen by other methods are often observed with high intensity, overlapping electronic transitions can be detected, and the nature of Franck-Condon displacements and vibronic coupling mechanisms can be determined.
机译:描述了紫外共振拉曼光谱对简单$ PI @ -Electron Systems丁二烯,环戊二烯,苯,乙炔,二甲基乙炔(2-丁炔)和二乙炔(1,3-丁酰基)的电子激发。具有这些物种的电子激发的拉曼散射共振提供了新信息,允许检查对应的吸收过渡的解释。确定完全对称模式的拉曼散射的去极化比率及其激发波长的变化是一种有用的方式,证明电子频带由具有正交偏振分量的两个或更多个转换。乙炔,二甲基 - 乙炔和苯的拉曼光谱显示出强大振动偶联的证据。已经开发了定量分析,用于观察伪jahn-externer畸变的苯壳。通过这些研究说明了使用紫外线辐射作为分子光谱的工具的共振拉曼光谱的一般效用。通过高强度观察其他方法没有看到的高度激发振动水平,可以检测重叠的电子转换,并且可以确定Franck-Condon位移和颤音耦合机构的性质。

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