Chinese Optics Letters, Volume. 17, Issue 11, 110601(2019)

Hollow-core fiber-based Raman probe extension kit for in situ and sensitive ultramicro-analysis

Hao Cai1, Xingtao Yu1, Qian Chu1, Zhiqiang Jin1, Bo Lin2, and Guanghui Wang1、*
Author Affiliations
  • 1College of Engineering and Applied Sciences, Nanjing University, Nanjing 210093, China
  • 2China Academy of Electronics and Information Technology, Beijing 100041, China
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    Figures & Tables(6)
    Schematic diagram of a portable Raman probe extension kit.
    Experimental diagram of the portable Raman probe extension kit.
    Comparison of the Raman spectra for ethanol detected by SLHCF and direct detection.
    Comparison of the Raman spectra for ethanol detected by the Raman detection system with and without gold film.
    (a) Raman spectra for the ethanol solution whose concentration ranged from 5% to 100% with respect to water. (b) The linear fitting relationship between the Raman intensity at 881 cm−1 and the concentration for the ethanol solution.
    (a) The Raman intensity at 881 cm−1 for the ethanol solution in water with the concentration varied in time. (b) The Raman intensity at 818 cm−1 for the isopropanol solution in water with the concentration varied in time. (c) The concentration of the ethanol solution and isopropanol solution injected into the capillary varied with the time. (d) The schematic on the replacement and cleaning of the sample in experiments. (e) The Raman intensities at 881 cm−1 and 818 cm−1 are chosen to represent ethanol and isopropanol without mutual interference.
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    Hao Cai, Xingtao Yu, Qian Chu, Zhiqiang Jin, Bo Lin, Guanghui Wang, "Hollow-core fiber-based Raman probe extension kit for in situ and sensitive ultramicro-analysis," Chin. Opt. Lett. 17, 110601 (2019)

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    Paper Information

    Category: Fiber Optics and Optical Communications

    Received: Apr. 27, 2019

    Accepted: Jun. 14, 2019

    Published Online: Sep. 6, 2019

    The Author Email: Guanghui Wang (wangguanghui@nju.edu.cn)

    DOI:10.3788/COL201917.110601

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