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首页> 外文期刊>Journal of physical chemistry letters >Stimulated Raman Spectroscopy with Entangled Light: Enhanced Resolution and Pathway Selection
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Stimulated Raman Spectroscopy with Entangled Light: Enhanced Resolution and Pathway Selection

机译:纠缠光的拉曼光谱:增强的分辨率和途径选择

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摘要

We propose a novel femtosecond stimulated Raman spectroscopy (FSRS) technique that combines entangled photons with interference detection to select matter pathways and enhance the resolution. Following photoexcitation by an actinic pump, the measurement uses a pair of broad-band entangled photons; one (signal) interacts with the molecule and together with a third narrow-band pulse induces the Raman process. The other (idler) photon provides a reference for the coincidence measurement. This interferometric photon coincidence counting detection allows one to separately measure the Raman gain and loss signals, which is not possible with conventional probe transmission detection. Entangled photons further provide a unique temporal and spectral detection window that can better resolve fast excited-state dynamics compared to classical and correlated disentangled states of light.
机译:我们提出了一种新颖的飞秒激发拉曼光谱(FSRS)技术,该技术将纠缠光子与干涉检测结合起来以选择物质途径并提高分辨率。光化泵进行光激发后,测量使用一对宽带纠缠光子;一个(信号)与分子相互作用,并与第三个窄带脉冲一起引发拉曼过程。另一个(惰轮)光子为一致性测量提供参考。这种干涉光子重合计数检测功能可让您单独测量拉曼增益和损耗信号,这是常规探头透射检测无法实现的。纠缠的光子进一步提供了独特的时间和光谱检测窗口,与经典的和相关的解缠结的光状态相比,该窗口可以更好地解决快速激发态的动力学问题。

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