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首页> 外文期刊>Journal of physical chemistry letters >Enhanced-Resolution Single-Shot 2DFT Spectroscopy by Spatial Spectral Interferometry
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Enhanced-Resolution Single-Shot 2DFT Spectroscopy by Spatial Spectral Interferometry

机译:空间光谱干涉法增强分辨率的单发2DFT光谱

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We demonstrate use of spatial interference for the complete electric field reconstruction of two-dimensional (2D) coherent spectroscopic signals generated through four wave mixing (4WM) in a single laser shot. Until now, the amplitude and phase characterization of 4WM signals has relied primarily on Fourier transform spectral interferometry (FTSI), which limits the measurement's sensitivity and resolution. We show that spatial spectral interferometry (SSI) is a generalized approach to 4WM signal detection that eliminates these inherent limitations of FTSI without introducing additional experimental complexity. SSI is used to measure the 2D photon echo spectra of two systems with dramatically different line widths, the coupled D line transitions in rubidium vapor and the energy-transfer dynamics in the light-harvesting protein LH2.
机译:我们演示了空间干涉用于在单个激光发射中通过四波混频(4WM)生成的二维(2D)相干光谱信号的完整电场重建的过程。到目前为止,4WM信号的幅度和相位表征主要依靠傅立叶变换光谱干涉法(FTSI),这限制了测量的灵敏度和分辨率。我们表明,空间光谱干涉法(SSI)是一种用于4WM信号检测的通用方法,它消除了FTSI的这些固有局限性,而没有引入其他实验复杂性。 SSI用于测量线宽截然不同的两个系统的二维光子回波谱,,蒸气中耦合的D线跃迁以及光收集蛋白LH2中的能量传递动力学。

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