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Femtosecond-to-nanosecond nonlinear spectroscopy of polymethine molecules

机译:飞甲到纳秒的非线性光学光谱

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The linear and nonlinear optical properties of a series of polymethine molecules are investigated to study the effects of molecular structure and the host environment on overall nonlinear absorption performance. The linear characterization includes measuring the solvatochromic shifts between absorption and fluorescence peaks and studying the excited-state orientational diffusion kinetics. The nonlinear characterization involves measuring the excited-state absorption spectra with a femtosecond white-light-continuum pump-probe technique and performing Z scans and nonlinear transmission measurements from the picosecond to the nanosecond time regimes. The results of these experiments allow us to develop an energy-level structure for the polymethines, which accurately predicts nonlinear absorption properties from the picosecond to the nanosecond time regimes. From this model we are able to identify the key molecular parameters for improved nonlinear absorption. (c) 2005 Optical Society of America
机译:研究了一系列聚次甲基分子的线性和非线性光学性质,以研究分子结构和宿主环境对整体非线性吸收性能的影响。线性表征包括测量吸收峰和荧光峰之间的溶剂化变色和研究激发态取向扩散动力学。非线性表征包括使用飞秒白光连续泵浦探针技术测量激发态吸收光谱,并执行Z扫描和从皮秒到纳秒时间范围的非线性透射测量。这些实验的结果使我们能够开发出聚次甲基的能级结构,该结构可准确预测皮秒至纳秒时间范围内的非线性吸收特性。从这个模型中,我们能够确定改善非线性吸收的关键分子参数。 (c)2005年美国眼镜学会

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