Knutsen Kelly P, Messer Benjamin M, Onorato Robert M, Saykally Richard J
Department of Chemistry, University of California, Berkeley, California 94720, USA.
J Phys Chem B. 2006 Mar 30;110(12):5854-64. doi: 10.1021/jp052416a.
We describe a simple multiplex vibrational spectroscopic imaging technique based on employing chirped femtosecond pulses in a coherent anti-Stokes Raman scattering (CARS) scheme. Overlap of a femtosecond Stokes pulse with chirped pump/probe pulses introduces a temporal gate that defines the spectral resolution of the technique, allowing single-shot acquisition of high spectral resolution CARS spectra over a several hundred wavenumber bandwidth. Simulated chirped (c-) CARS spectra match the experimental results, quantifying the dependence of the high spectral resolution on the properties of the chirped pulse. c-CARS spectromicroscopy offers promise as a simple and generally applicable high spatial resolution, chemically specific imaging technique for studying complex biological and materials samples.
我们描述了一种基于在相干反斯托克斯拉曼散射(CARS)方案中使用啁啾飞秒脉冲的简单多路复用振动光谱成像技术。飞秒斯托克斯脉冲与啁啾泵浦/探测脉冲的重叠引入了一个时间门,该时间门定义了该技术的光谱分辨率,从而允许在数百波数带宽上单次采集高光谱分辨率的CARS光谱。模拟的啁啾(c-)CARS光谱与实验结果相匹配,量化了高光谱分辨率对啁啾脉冲特性的依赖性。c-CARS光谱显微镜作为一种简单且普遍适用的高空间分辨率、化学特异性成像技术,有望用于研究复杂的生物和材料样品。