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Nonlinear Optical Spectroscopic Characterization of a Series of Fluorene Derivatives

机译:一系列芴衍生物的非线性光学光谱表征

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We have performed nonlinear spectroscopic measurements to investigate the chemical structureonlinear optical property relations for a set of alkyl fluorene derivatives. The characterization method we have utilized is a femtosecond white-light continuum (WLC) pump-probe spectrometer that can rapidly characterize an organic sample's nondegenerate two-photon absorption (2PA) spectrum. The nature of these experiments requires sophisticated data analysis. In particular, the relative group velocity mismatch between the pump and probe, which are at different frequencies, makes these pulses walk through each other within the thickness of the sample. For widely different frequencies, this can severely diminish the 2PA signal strength. However, given careful analysis, we have found good agreement with well-known semiconductor samples. Confidence in this method has allowed us to investigate the effects of solvism, electron-withdrawing character, conjugation length, and symmetry on the two-photon absorbing properties of these molecules. We have found an optimum solvent polarity as well as electron-withdrawing character which serves to maximize the strength of the 2PA in these materials. Different synthesis avenues have provided us with two different methods of extending the conjugation length that increases the nonlinearity as well. Finally, investigations of molecules with disparate symmetry have allowed us to identify the symmetry of the excited states. In addition, we present the first experimental study of the intermediate state resonance enhancement of nondegenerate 2PA in organic molecules. Using a simplified sum-over-states expression, we make comparisons between experiment and theory.
机译:我们已经执行了非线性光谱测量,以研究一组烷基芴衍生物的化学结构/非线性光学性质关系。我们使用的表征方法是飞秒白光连续光谱(WLC)泵浦-探针光谱仪,可以快速表征有机样品的非简并双光子吸收(2PA)光谱。这些实验的性质需要复杂的数据分析。特别地,处于不同频率的泵和探头之间的相对群速度失配,使这些脉冲在样品的厚度范围内彼此穿越。对于相差很大的频率,这可能会严重降低2PA信号强度。但是,经过仔细的分析,我们发现与知名的半导体样品具有很好的一致性。对这种方法的信心使我们能够研究溶剂化,吸电子特性,共轭长度和对称性对这些分子的双光子吸收特性的影响。我们发现了最佳的溶剂极性以及吸电子特性,这些特性可最大程度地提高这些材料中2PA的强度。不同的合成途径为我们提供了两种延长共轭长度的不同方法,这也增加了非线性。最后,对具有不同对称性的分子的研究使我们能够确定激发态的对称性。另外,我们提出了有机分子中非简并2PA的中间态共振增强的第一项实验研究。使用简化的状态求和表达式,我们在实验和理论之间进行了比较。

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