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Resonant Raman spectra of diindenoperylene thin films

机译:二茚并oper烯薄膜的共振拉曼光谱

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Resonant and preresonant Raman spectra obtained on diindenoperylene (DIP) thin films are interpreted with calculations of the deformation of a relaxed excited molecule with density functional theory (DFT). The comparison of excited state geometries based on time-dependent DFT or on a constrained DFT scheme with observed absorption spectra of dissolved DIP reveals that the deformation pattern deduced from constrained DFT is more reliable. Most observed Raman peaks can be assigned to calculated A_g -symmetric breathing modes of DIP or their combinations. As the position of one of the laser lines used falls into a highly structured absorption band, we have carefully analyzed the Raman excitation profile arising from the frequency dependence of the dielectric tensor. This procedure gives Raman cross sections in good agreement with the observed relative intensities, both in the fully resonant and in the preresonant case.
机译:用密度泛函理论(DFT)计算松弛的激发分子的变形,从而解释了在二茚并oper烯(DIP)薄膜上获得的共振和前共振拉曼光谱。将基于时间的DFT或受约束的DFT方案的激发态几何与观察到的溶解DIP吸收光谱进行比较,发现从受约束的DFT推导出的变形模式更可靠。可以将大多数观察到的拉曼峰分配给DIP或其组合的A_g对称呼吸模式。当所用激光线之一的位置落入高度结构化的吸收带时,我们已经仔细分析了由介电张量的频率依赖性引起的拉曼激发轮廓。在完全共振和先共振的情况下,该程序使拉曼横截面与观察到的相对强度高度吻合。

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