Meng Zhaokai, Petrov Georgi I, Yakovlev Vladislav V
Texas A&M University, College Station, TX, 77843, United States.
Sci Rep. 2016 Feb 1;6:20017. doi: 10.1038/srep20017.
Fast and sensitive Raman spectroscopy measurements are imperative for a large number of applications in biomedical imaging, remote sensing and material characterization. Stimulated Raman spectroscopy offers a substantial improvement in the signal-to-noise ratio but is often limited to a discrete number of wavelengths. In this report, by introducing an electronically-tunable acousto-optical filter as a wavelength selector, a novel approach to a broadband stimulated Raman spectroscopy is demonstrated. The corresponding Raman shift covers the spectral range from 600 cm(-1) to 4500 cm(-1), sufficient for probing most vibrational Raman transitions. We validated the use of the new instrumentation to both coherent anti-Stokes scattering (CARS) and stimulated Raman scattering (SRS) spectroscopies.
快速且灵敏的拉曼光谱测量对于生物医学成像、遥感和材料表征等大量应用而言至关重要。受激拉曼光谱在信噪比方面有显著提升,但通常限于离散数量的波长。在本报告中,通过引入一个电子可调谐声光滤波器作为波长选择器,展示了一种用于宽带受激拉曼光谱的新方法。相应的拉曼位移覆盖从600 cm⁻¹至4500 cm⁻¹的光谱范围,足以探测大多数振动拉曼跃迁。我们验证了这种新仪器在相干反斯托克斯散射(CARS)和受激拉曼散射(SRS)光谱学中的应用。