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Nonlinear absorption and refraction process of fluorene-based molecules via picosecond and femtosecond measurements

机译:通过PICOSECOND和Femtosecond测量的芴基分子的非线性吸收和折射过程

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The nonlinear optical performance of several Fluorene-based molecules was studied using different measurement methods and pulse durations. We used picosecond pulses at 532 nm and, femtosecond pulses tunable from 532-810 nm for performing open and closed aperture Z-scans, and we used femtosecond 570-930 nm pulses for two-photon induced fluorescence (2PF) spectroscopy. The observed nonlinear losses were compared using the three methods. The results exhibit much stronger nonlinear absorption with picosecond pulses due to the additional excited-state absorption processes involved. Also the nonlinear refractive index was found to be higher for the picosecond measurements. In addition using a femtosecond white-light continuum (WLC) pump-probe method we showed that by proper tuning of pump and probe wavelengths an intermediate state resonance enhancement (ISRE) of the 2PA can be observed yielding the same overall nonlinear absorption observed using picosecond pulses.
机译:使用不同的测量方法和脉冲持续时间研究了几种基于芴类分子的非线性光学性能。 我们在532nm处使用皮秒脉冲,并且在532-810 nm上可调谐的Femtosecond脉冲,用于执行开放和闭孔Z扫描,我们使用FemtoSecond 570-930 nm脉冲进行双光子诱导的荧光(2pF)光谱。 使用三种方法进行比较观察到的非线性损失。 由于所涉及的额外激发态的吸收过程,结果表现出与PICOSECOND脉冲的更强烈的非线性吸收。 发现非线性折射率也较高,用于Pic秒测量。 此外,使用Femtosecond White-Lightum(WLC)泵探针方法,我们表明,通过适当调谐泵和探针波长,可以观察到2Pa的中间状态共振增强(ISRE),从而产生使用PICOSecond观察到相同的整体非线性吸收 脉冲。

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