论文标题

通过飞秒刺激的拉曼光谱访问激发态分子振动

Accessing Excited State Molecular Vibrations by Femtosecond Stimulated Raman Spectroscopy

论文作者

Batignani, Giovanni, Ferrante, Carino, Scopigno, Tullio

论文摘要

激发态振动对于确定分子化合物的光学和光化学特性至关重要。刺激的拉曼散射可以连贯地刺激和探测分子振动,但通常仅限于基态特性。实际上,在共振条件下工作,可以将横截面增强和选择性激发到靶向电子水平,但由于存在重叠的光谱贡献而受到信号复杂性的增加而受到阻碍。在这里,我们通过利用拉曼和探针脉冲之间的相对时间延迟来控制激发态群体,并结合图形形式主义,将途径与信号产生剖析,以控制激发态群体,从而揭示了地面和激发状态振动的详细信息。然后利用所提出的方法阐明在甲三颗紫紫色的范式中,地面和激发电子状态的振动特性。我们预计提出的方法具有选择性映射与光活性化合物中隐含的瞬态电子阶段有关的反应坐标的潜力。

Excited-state vibrations are crucial for determining photophysical and photochemical properties of molecular compounds. Stimulated Raman scattering can coherently stimulate and probe molecular vibrations with optical pulses, but it is generally restricted to ground state properties. Working in resonance conditions, indeed, enables cross-section enhancement and selective excitation to a targeted electronic level, but is hampered by an increased signal complexity due to the presence of overlapping spectral contributions. Here, we show how detailed information on ground and excited state vibrations can be disentangled, by exploiting the relative time delay between Raman and probe pulses to control the excited state population, combined with a diagrammatic formalism to dissect the pathways concurring to the signal generation. The proposed method is then exploited to elucidate the vibrational properties of ground and excited electronic states in the paradigmatic case of Cresyl Violet. We anticipate that the presented approach holds the potential for selective mapping the reaction coordinates pertaining to transient electronic stages implied in photo-active compounds.

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