Gehm M E, Kim M S, Fernandez C, Brady D J
University of Arizona Electrical and Computer Engineering Department, Tucson, AZ 85721, USA.
Opt Express. 2008 Jul 21;16(15):11032-43. doi: 10.1364/oe.16.011032.
We describe a high-throughput hyperspectral microscope. The system replaces the slit of conventional pushbroom spectral imagers with a static coded aperture mask. We present the theoretical underpinnings of the aperture coded spectral engine and describe two proof-of-concept experimental implementations. Compared to a conventional pushbroom system, the aperture coded systems have 32 times greater throughput. Both systems have about a 1 nm spectral resolution over the spectral range of 550-665 nm. For the first design, the spatial resolution for the system is 5.4 microm while the spatial resolution for the second system ranges from 7.7 microm to 1.54 microm. We describe experimental results from proof-of-concept applications of the imager to hyperspectral microscopy.
我们描述了一种高通量高光谱显微镜。该系统用一个静态编码孔径掩模取代了传统推扫式光谱成像仪的狭缝。我们介绍了孔径编码光谱引擎的理论基础,并描述了两个概念验证实验实现。与传统推扫式系统相比,孔径编码系统的通量高32倍。在550 - 665 nm的光谱范围内,两个系统的光谱分辨率均约为1 nm。对于第一种设计,该系统的空间分辨率为5.4微米,而第二个系统的空间分辨率范围为7.7微米至1.54微米。我们描述了成像仪在高光谱显微镜概念验证应用中的实验结果。