首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Stimulated coherent anti-Stokes Raman spectroscopy (CARS) resonances originate from double-slit interference of two-photon Stokes pathways
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Stimulated coherent anti-Stokes Raman spectroscopy (CARS) resonances originate from double-slit interference of two-photon Stokes pathways

机译:受激相干反斯托克斯拉曼光谱(CARS)共振源自双光子斯托克斯路径的双缝干涉

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摘要

Coherent anti-Stokes Raman spectroscopy (CARS) uses vibrational resonances to study nuclear wavepacket motions and is widely used in cell imaging and other applications. The resonances usually lie on top of a parametric component that involves no change in the molecular state and creates an undesirable background which reduces the sensitivity of the technique. Here, by examining the process from the perspective of the molecule, rather than the field, we are able to separate the two components and recast each resonance as a modulus square of a transition amplitude which contains an interference between two Stokes pathways, each involving a different pair of field modes. We further propose that dissipative signals obtained by measuring the total absorption of all field modes in a convenient collinear pulse geometry can eliminate the parametric component and retain the purely resonant contributions. Specific vibrational resonances may then be readily detected using pulse shapers through derivatives with respect to pulse parameters.
机译:相干反斯托克斯拉曼光谱(CARS)使用振动共振研究核波包运动,并广泛用于细胞成像和其他应用。共振通常位于不涉及分子状态变化的参量成分之上,并产生不希望的背景,从而降低了该技术的灵敏度。在这里,通过从分子而不是视野的角度检查过程,我们能够分离这两个成分,并将每个共振重塑为包含两个斯托克斯路径之间干扰的跃迁幅度模量平方。不同的场模式对。我们进一步提出,通过在方便的共线脉冲几何结构中测量所有场模式的总吸收而获得的耗散信号可以消除参数分量并保留纯谐振贡献。然后可以使用脉冲整形器通过关于脉冲参数的导数容易地检测到特定的振动共振。

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