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Time-resolved hyper-Rayleigh scattering: measuring first hyperpolarizabilities β of fluorescent molecules

机译:时间解决的超瑞利散射:测量荧光分子的第一个超积分β

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摘要

Time-resolved hyper-Rayleigh scattering experiments using a femtosecond mode-locked Ti-sapphire laser are presented. The technique is capable of discriminating between hyper-Rayleigh scattered light and fluorescent emission induced by multiphoton absorption with a time resolution of 80 ps. Measurements o­n the non-fluorescent organic molecules crystal violet and calix- [4]arene demonstrate that the technique can measure first hyperpolarizabilities beta consistent with experiments using a Q-switched Nd:YAG laser. The first hyperpolarizability beta of a fluorescent molecule, which is often overestimated when using a nanosecond laser system, can be corrected for long-term fluorescence using the time-resolved technique as is demonstrated for the octupolar molecule 1,3,5-tris[(4- pyridyl)ethynyl]benzene.
机译:呈现了使用飞秒模式锁定的Ti-Sapphire激光的时间分辨的超瑞利散射实验。该技术能够区分通过多光子吸收诱导的超瑞利散射光和荧光发射,以80 ps的时间分辨率。在非荧光有机分子晶体紫和Calix- [4]芳烃上的测量表明,该技术可以通过使用Q开关Nd:YAG激光的实验一致地测量第一个超极化β。荧光分子的第一种高分子化β通常在使用纳秒激光系统时经常估计,可以使用时间分辨技术来校正长期荧光,如octupolar分子1,3,5-tris [( 4-吡啶基)乙炔基]苯。

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