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首页> 外文期刊>International Journal of Thermophysics >'Dark' Excited States of Diphenylacetylene Studied by Nonresonant Two-Photon Excitation Optical-Probing Photoacoustic Spectroscopy
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'Dark' Excited States of Diphenylacetylene Studied by Nonresonant Two-Photon Excitation Optical-Probing Photoacoustic Spectroscopy

机译:非共振双光子激发光学探测光声光谱研究二苯乙炔的“暗”激发态

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摘要

Optical probing photoacoustic spectroscopy (OPPAS), a photothermal calorimetric technique, was applied to investigate one-photon forbidden "dark" electronically excited singlet states of diphenylacetylene (DPA), belonging to the D_(2h) point group. When 502 nm light from a pulsed OPO laser was focused into a DPA hexane solution, an acoustic wave was detected as a transient angular deflection of the probe beam (He-Ne laser). The laser power dependence of the OPPAS signal was estimated to be 1.9 ± 0.2, suggesting two-photon absorption for acoustic generation. With the OPPAS technique, we successfully obtained a nonresonant two-photon absorption spectrum of DPA in solution for the first time. The two-photon allowed 1~1 B_(3g) and 2~1 A_g states were found to be above the one-photon allowed 1~1 B_(1u) state. These results show that OPPAS is a highly sensitive technique applicable to two-photon absorption spectral measurements of nonfluorescent species.
机译:光学探测光声光谱法(OPPAS)是一种光热量热技术,用于研究属于D_(2h)点组的二苯乙炔(DPA)的单光子禁带“暗”电子激发单重态。当将来自脉冲OPO激光器的502 nm光聚焦到DPA己烷溶液中时,检测到声波作为探测光束(He-Ne激光器)的瞬时角偏转。 OPPAS信号的激光功率依赖性估计为1.9±0.2,这表明产生声波时吸收了两个光子。利用OPPAS技术,我们首次成功获得了溶液中DPA的非共振双光子吸收光谱。发现双光子允许1〜1 B_(3g)和2〜1 A_g状态高于单光子允许的1〜1 B_(1u)状态。这些结果表明,OPPAS是一种高度灵敏的技术,适用于非荧光物质的双光子吸收光谱测量。

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