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Multiplexed hyperspectral imaging and spectrometry using spatial light modulators.

机译:使用空间光调制器的多光谱高光谱成像和光谱分析。

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摘要

The signal-noise-ratio, (SNR) is often the primary figure of merit when evaluating instrument performance. Multiplexing is one method employed in spectrometry and imaging to increase the magnitude of a signal received by a detector during a period of measurement. Optical masks employing Hadamard encoding matrices for multiplexing can be used to increase the SNR of some spectrometric and hyperspectrometric imaging measurements. A transmissive/opaque metal-etched optical mask and a reflective micro-mirror optical mask were used to investigate Hadamard transform (HT) multiplexing in spectrometric and hyperspectrometric imaging measurements. HT spectrometry (HTS) is a combination of dispersive and multiplexing spectrometry employing a one-dimensional (1D) optical mask. Dividing and folding the ID Hadamard, encoded optical mask used for spectral encoding in HT multiplexing spectrometry results in a two-dimensional (2D) mask that can be used for spatial encoding in Hadamard transform imaging (HTI). An etched, mechanically translated 2D optical mask and a digital micro-mirror array (DMA) encoded by a cyclic S255 matrix were successfully employed in the investigation of spatial multiplexing in HT Raman chemical mapping systems. Imaging heterogeneous liquid and solid samples using a 2D Hadamard encoded metal-etched moving mask was successfully demonstrated using conventional Raman spectroscopic equipment. The DMA is an improvement in Hadamard optical mask technology over moving optical masks and was successfully applied to visible Raman hyperspectral imaging of heterogeneous liquid and solid samples. The DMA was also successfully demonstrated to be effective for improving SNR in near-infrared (NIR) FITS as a 1D Hadamard encoded optical mask.
机译:评估仪器性能时,信噪比(SNR)通常是主要的品质因数。复用是在光谱测定法和成像中采用的一种方法,用于增加测量期间检测器接收到的信号的幅度。采用Hadamard编码矩阵进行多路复用的光学掩模可用于提高某些光谱和高光谱成像测量的SNR。透射/不透明金属蚀刻光学掩模和反射微镜光学掩模用于研究光谱和高光谱成像测量中的Hadamard变换(HT)复用。 HT光谱法(HTS)是采用一维(1D)光学掩模的色散和多重光谱法的组合。划分和折叠ID Hadamard编码后的光学掩模,用于HT复用光谱中的光谱编码,从而产生可用于Hadamard变换成像(HTI)中的空间编码的二维(2D)掩模。在循环拉曼化学制图系统的空间多路复用研究中,成功​​地使用了经过蚀刻,机械转换的2D光学掩模和由循环S 255 矩阵编码的数字微镜阵列(DMA)。使用常规拉曼光谱仪成功地证明了使用二维Hadamard编码的金属蚀刻移动掩模对异质液体和固体样品成像的效果。 DMA是Hadamard光学掩模技术相对于移动光学掩模的一项改进,已成功应用于异质液体和固体样品的可见拉曼高光谱成像。 DMA还被成功证明可有效改善近红外(NIR)FITS中的SNR,并将其作为一维Hadamard编码的光学掩模。

著录项

  • 作者

    DeVerse, Richard Andrew.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Chemistry Analytical.; Computer Science.; Physics Optics.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 237 p.
  • 总页数 237
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;自动化技术、计算机技术;光学;
  • 关键词

  • 入库时间 2022-08-17 11:48:08

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