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Extending Raman's Reach: Enabling Applications via Greater Sensitivity and Speed

机译:扩大拉曼的影响范围:通过更高的灵敏度和速度实现应用程序

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Over the last decade, miniature fiber optic spectrometers have greatly expanded the ability of Raman spectroscopy to tackle practical applications in the field, from mobile pharmaceutical ID to hazardous material assessment in remote locations. There remains a gap, however, between the typical diode array spectrometer and their more sensitive benchtop analogs. High sensitivity, cooled Raman spectrometers have the potential to narrow that gap by providing greater sensitivity, better SNR, and faster measurement times. In this paper, we'll look at the key factors in the design of high sensitivity miniature Raman spectrometers and their associated accessories, as well as the key metric for direct comparison of these systems - limit of detection. With the availability of our high sensitivity Raman systems operating at wavelengths from the UV to NIR, many applications are now becoming practical in the field, from trace level detection to analysis of complex biological samples.
机译:在过去的十年中,微型光纤光谱仪极大地扩展了拉曼光谱仪的能力,以解决该领域中的实际应用,从移动药品ID到偏远地区的有害物质评估。但是,典型的二极管阵列光谱仪与其更灵敏的台式模拟物之间仍然存在差距。高灵敏度的冷却拉曼光谱仪有可能通过提供更高的灵敏度,更好的SNR和更快的测量时间来缩小这一差距。在本文中,我们将研究设计高灵敏度微型拉曼光谱仪及其相关附件的关键因素,以及直接比较这些系统的关键指标-检测限。随着我们在波长从UV到NIR的高灵敏度拉曼系统的可用性,从痕量水平检测到复杂生物样品的分析,该领域的许多应用现在正变得实用。

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