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Lorentzian Amplitude and Phase Pulse Shaping for Nonresonant Background Suppression and Enhanced Spectral Resolution in Coherent Anti-Stokes Raman Scattering Spectroscopy and Microscopy

机译:相干反斯托克斯拉曼散射光谱和显微镜中用于非共振背景抑制和增强的光谱分辨率的洛伦兹幅度和相位脉冲整形

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摘要

Femtosecond coherent anti-Stokes Raman scattering (CARS) spectroscopy offers several advantages over spontaneous Raman spectroscopy due to the inherently high sensitivity and low average power deposition in the sample. Femtosecond CARS can be implemented in a collinear pump/probe beam configuration for microspectroscopy applications and has emerged as a powerful technique for chemical imaging of biological specimens. However, one serious limitation of this approach is the presence of a high nonresonant background component that often obscures the resonant signals of interest. We report here an innovative pulse-shaping method based on Lorentzian amplitude and phase spectral modulation of a broadband femtosecond probe pulse that yields spectra with both high spectral resolution and no nonresonant background. No further mathematical analysis is needed to extract Raman spectra. The utility of the proposed method for CARS microscopy is demonstrated using a mixture of polystyrene and latex beads, as well as dry-fixed embryonic stem cells.
机译:飞秒相干反斯托克斯拉曼散射(CARS)光谱比自发拉曼光谱具有多个优势,因为样品固有的高灵敏度和低平均功率沉积。飞秒CARS可以在共线泵/探针束配置中实现,用于显微光谱应用,并且已成为一种强大的技术,可以对生物样本进行化学成像。然而,该方法的一个严重局限性是存在高的非共振本底成分,该成分常常会掩盖感兴趣的共振信号。我们在这里报告一种创新的脉冲整形方法,该方法基于宽带飞秒探查脉冲的洛伦兹幅度和相位频谱调制而产生,该频谱产生具有高频谱分辨率且无非共振背景的频谱。无需进一步的数学分析即可提取拉曼光谱。使用聚苯乙烯和乳胶珠以及干固定的胚胎干细胞的混合物证明了拟议方法在CARS显微镜中的实用性。

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    《Applied Spectroscopy》 |2010年第7期|767-774|共8页
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