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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Classification of Dynamic Vibronic Couplings in Vibrational Real-Time Spectra of a Thiophene Derivative by Few-Cycle Pulses
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Classification of Dynamic Vibronic Couplings in Vibrational Real-Time Spectra of a Thiophene Derivative by Few-Cycle Pulses

机译:几个周期脉冲的噻吩衍生物振动实时光谱中动态振动耦合的分类

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摘要

Pump-probe spectroscopy was performed with a few cycle pulses of 6.7 fs duration. The electronic transition intensity modulation was induced by molecular vibration in a quinoid thiophene molecule in solution. The real-time vibrational features were analyzed in terms of dependence of vibrational amplitude and phase on probe photon energy. The electronic transition probability is modulated by molecular vibration via vibronic coupling. Changes in the spectral shape and intensity of the time-resolved spectrum were studied by tracking characteristic spectral features including the peak frequency and intensity, spectral bandwidth, and band-integrated intensity. From the analysis the modulation mechanisms were classified into two groups: (1) Condon type and (2) non-Condon type. The features of the wave packet motions were also classified into zeroth-order derivatives due to quasi-pure non-Condon type and first- and second-order derivative types due to the displacement of the potential minimum and the potential curvature change associated with the relevant vibronic transition, respectively.
机译:用一些持续时间为6.7 fs的循环脉冲执行泵浦光谱。电子跃迁强度调制是由溶液中醌类噻吩分子中的分子振动引起的。根据振动幅度和相位对探针光子能量的依赖性分析了实时振动特征。电子跃迁概率是通过分子振动通过分子振动耦合来调节的。通过跟踪特征光谱特征(包括峰值频率和强度,光谱带宽和谱带积分强度),研究了时间分辨光谱的光谱形状和强度的变化。通过分析,将调制机制分为两类:(1)Condon型和(2)非Condon型。波包运动的特征也归类为由于准纯非康登类型的零阶导数和由于势极最小值的位移和与之相关的势曲率变化而引起的一阶和二阶导数类型。振动过渡。

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