Backscattering Raman spectroscopy using multi-grating spatial heterodyne Raman spectrometer
Liu, J. L.; Bayanheshig; Qi, X. D.; Zhang, S. W.; Sun, C.; Zhu, J. W.; Cui, J. C.; Li, X. T.
刊名Applied Optics
2018
卷号57期号:33页码:9735-9745
关键词in-situ spectra sulfur ir Optics
ISSN号1559-128X
DOI10.1364/ao.57.009735
英文摘要Spatial heterodyne Raman spectrometry (SHRS) is a spectral analysis technique used to study material structures and compositions. We propose a multi-grating SHRS system that uses a multi-grating module rather than the single grating used to terminate each arm in traditional spatial heterodyne spectrometry (SHS). The proposed system not only retains the advantages of traditional SHS but also resolves the mutual limitation between system spectral range and resolution. The increased spectral range and resolution that can be achieved in detection are dependent on the number of sub-gratings used in the module. A verification system was built using 130 gr/mm and 150 gr/mm sub-gratings and calibrated. Under different experimental conditions (including laser power, integration time, container material and thickness, pure and mixed samples, and standoff experiments), the backscattered Raman spectra of different types of targets (including organic solutions, inorganic powders, and minerals) were tested. The multi-grating SHRS shows good performance for broad spectral range and high-resolution Raman detection. (C) 2018 Optical Society of America
内容类型期刊论文
源URL[http://ir.ciomp.ac.cn/handle/181722/60915]  
专题中国科学院长春光学精密机械与物理研究所
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Liu, J. L.,Bayanheshig,Qi, X. D.,et al. Backscattering Raman spectroscopy using multi-grating spatial heterodyne Raman spectrometer[J]. Applied Optics,2018,57(33):9735-9745.
APA Liu, J. L..,Bayanheshig.,Qi, X. D..,Zhang, S. W..,Sun, C..,...&Li, X. T..(2018).Backscattering Raman spectroscopy using multi-grating spatial heterodyne Raman spectrometer.Applied Optics,57(33),9735-9745.
MLA Liu, J. L.,et al."Backscattering Raman spectroscopy using multi-grating spatial heterodyne Raman spectrometer".Applied Optics 57.33(2018):9735-9745.
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