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Time-resolved broadband Raman spectroscopies: A unified six-wave-mixing representation

机译:时间分辨宽带拉曼光谱:统一的六波混频表示

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Excited-state vibrational dynamics in molecules can be studied by an electronically off-resonant Raman process induced by a probe pulse with variable delay with respect to an actinic pulse. We establish the connection between several variants of the technique that involve either spontaneous or stimulated Raman detection and different pulse configurations. By using loop diagrams in the frequency domain, we show that all signals can be described as six wave mixing which depend on the same four point molecular correlation functions involving two transition dipoles and two polarizabilities and accompanied by a different gating. Simulations for the stochastic two-state-jump model illustrate the origin of the absorptive and dispersive features observed experimentally.
机译:可以通过电子非共振拉曼过程研究分子中的激发态振动动力学,该拉曼过程是由相对于光化脉冲具有可变延迟的探测脉冲引起的。我们在涉及自发或受激拉曼检测和不同脉冲配置的技术的几种变体之间建立了联系。通过使用频域中的回路图,我们可以将所有信号描述为六波混频,这取决于相同的四点分子相关函数,涉及两个跃迁偶极子和两个极化率,并伴随着不同的门控。随机二态跳跃模型的仿真说明了实验观察到的吸收和色散特征的起源。

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