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Femtosecond pump-probe study of molecular vibronic structures and dynamics of a cyanine dye in solution

机译:飞秒泵浦探针研究溶液中花青染料的分子振动结构和动力学

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摘要

Time-resolved pump-probe spectra of 1,1',3,3,3',3'-hexamethyl-4,4',5,5'-dibenzo-2,2'-indotricarbocyanine (HDITC), a cyanine dye, in ethylene glycol are obtained using 11 fs and 90 fs duration pulses and analyzed in order to study its potential energy surfaces and vibrational dynamics. Ten oscillatory frequencies ranging from 30 cm~(-1) to 1400 cm~(-1) are observed in the 11 fs duration wavelength-resolved pump-probe measurements. They are assigned as fundamental vibrational frequencies of HDITC. The relative displacements of the equilibrium position between electronic excited and ground states along the resolved ten vibrational modes are determined through the wavelength dependence of the oscillatory amplitude. After considering the contributions of the ten vibrational modes, it is found that most of the Stokes shift and the early fast decays of the pump-probe signals are due to relaxation along the low frequency overdamped modes of the chromophore. The overdamped modes are characterized by the 90 fs pump-probe signals with the excitation at the red edge of the absorption band.
机译:1,1',3,3,3',3'-六甲基-4,4',5,5'-二苯并-2,2'-吲哚三聚花青(HDITC)(花青染料)的时间分辨泵浦光谱使用11 fs和90 fs持续时间脉冲获得乙二醇中的,进行分析,以研究其势能面和振动动力学。在11 fs持续时间的波长分辨泵浦探针测量中,观察到10个振荡频率,范围从30 cm〜(-1)到1400 cm〜(-1)。它们被指定为HDITC的基本振动频率。电子振动态和基态之间的平衡位置沿着已解析的十个振动模式的相对位移是通过振荡幅度的波长依赖性来确定的。在考虑了十种振动模式的贡献后,发现大多数斯托克斯位移和泵浦探针信号的早期快速衰减是由于生色团的低频过阻尼模式引起的弛豫。过阻尼模式的特征是90 fs泵浦探针信号,其激发在吸收带的红色边缘。

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