首页> 外文会议>SPIE Conference on Biomedical Vibrational Spectroscopy: Advances in Research and Industry >The High Throughput Virtual Slit enables compact, inexpensive Raman spectral imagers
【24h】

The High Throughput Virtual Slit enables compact, inexpensive Raman spectral imagers

机译:高吞吐量虚拟狭缝启用紧凑,廉价的拉曼光谱成像器

获取原文

摘要

Raman spectral imaging is increasingly becoming the tool of choice for field-based applications such as threat, narcotics and hazmat detection; air, soil and water quality monitoring; and material ID. Conventional fiber-coupled point source Raman spectrometers effectively interrogate a small sample area and identify bulk samples via spectral library matching. However, these devices are very slow at mapping over macroscopic areas. In addition, the spatial averaging performed by instruments that collect binned spectra, particularly when used in combination with orbital raster scanning, tends to dilute the spectra of trace particles in a mixture. Our design, employing free space line illumination combined with area imaging, reveals both the spectral and spatial content of heterogeneous mixtures. This approach is well suited to applications such as detecting explosives and narcotics trace particle detection in fingerprints. The patented High Throughput Virtual Slit~1 is an innovative optical design that enables compact, inexpensive handheld Raman spectral imagers. HTVS-based instruments achieve significantly higher spectral resolution than can be obtained with conventional designs of the same size. Alternatively, they can be used to build instruments with comparable resolution to large spectrometers, but substantially smaller size, weight and unit cost, all while maintaining high sensitivity. When used in combination with laser line imaging, this design eliminates sample photobleaching and unwanted photochemistry while greatly enhancing mapping speed, all with high selectivity and sensitivity. We will present spectral image data and discuss applications that are made possible by low cost HTVS-enabled instruments.
机译:拉曼光谱成像越来越多地成为基于现场的应用的选择工具,例如威胁,麻醉品和Hazmat检测;空气,土壤和水质监测;和材料ID。传统的光纤耦合点源拉曼光谱仪有效地询问了小样本区域,并通过光谱库匹配识别批量样本。然而,这些器件在宏观区域映射时非常慢。另外,通过收集箱体光谱的仪器进行的空间平均,特别是当与轨道光栅扫描结合使用时,倾向于在混合物中稀释痕量颗粒的光谱。我们的设计,采用自由空间照明结合面积成像,揭示了异质混合物的光谱和空间含量。这种方法非常适合于检测指纹中检测炸药和毒物痕量粒子检测的应用。专利的高吞吐量虚拟狭缝〜1是一种创新的光学设计,可实现紧凑,廉价的手持式拉曼光谱成像仪。基于HTVS的仪器达到比具有相同尺寸的传统设计的谱分辨率显着更高。或者,它们可用于构建具有可比分辨率的仪器,以实现大的光谱仪,但是大小尺寸,重量和单位成本,全部在保持高灵敏度。当与激光线成像结合使用时,这种设计消除了样品光漂白和不需要的光化学,同时大大提高了映射速度,都具有高选择性和灵敏度。我们将呈现光谱图像数据并讨论通过低成本的HTV可启用的仪器实现的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号