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High-speed hyperspectral Raman imaging for label-free compositional microanalysis

机译:高速高光谱拉曼成像技术用于无标记成分的微量分析

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摘要

We present high-speed hyperspectral Raman imaging with integrated active-illumination for label-free compositional microanalysis. We show that high-quality Raman spectra can be acquired from as many as ~1,000 spots/sec semi-randomly distributed among a ~100x100 μm2 area without mechanical scanning. We demonstrate rapid data acquisition from three types of samples: 1) uniform, strong Raman scatterers, e.g., silicon substrates; 2) non-uniform, medium-strength Raman scatterers, e.g., polymer microparticles; and, 3) non-uniform, relatively weak Raman scatterers, e.g., bacterial spores. We compare the system performance to that of point-scan with an electron-multiplied CCD camera, as implemented in some commercial systems. The results suggest that our system not only provides significant imaging speed advantage for various types of samples, but also permits substantially longer integration time per spot, leading to superior signal-to-noise ratio data. Our system enables the rapid collection of high quality Raman spectra for reliable and robust compositional microanalysis that are potentially transformative in applications such as semiconductor material and device, polymer blend and biomedicine.
机译:我们提出了带有集成主动照明的高速高光谱拉曼成像技术,用于无标记成分的微量分析。我们显示高质量的拉曼光谱可以在不进行机械扫描的情况下,从〜100x100μm 2 区域中的〜1000个斑点/秒半随机分布中获取。我们展示了从三种类型的样品中快速采集数据的能力:1)均匀,坚固的拉曼散射体,例如硅基板; 2)非均匀,中等强度的拉曼散射体,例如聚合物微粒; 3)不均匀,相对较弱的拉曼散射体,例如细菌孢子。我们将系统性能与使用电子倍增CCD相机的点扫描进行了比较,这在某些商业系统中已经实现。结果表明,我们的系统不仅为各种类型的样本提供了显着的成像速度优势,而且每个点的积分时间大大延长,从而带来了出色的信噪比数据。我们的系统能够快速收集高质量的拉曼光谱,以进行可靠而强大的成分微分析,这些微分析在诸如半导体材料和器件,聚合物共混物和生物医学等应用中具有潜在的变革性。

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