Raman spectroscopic detection using a two-dimensional echelle spectrometer
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School of Science, Northwest Agriculture and Forestry University, Yangling 712100, China

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    Abstract:

    In order to meet the high-resolution and wide spectrum range of the backscattering Raman system, this paper designs and builds a Raman test system based on the echelle spectrometer. In the optical splitting system, compared with the ordinary planar grating spectrometer, the use of the echelle improves the resolution of the system without increasing the volume of the system. The use of intensified charge-coupled device (ICCD) in the detection system improves the signal-to-noise ratio (SNR) and the detection limit of weak spectrum. Finally, the Raman system was spectrally calibrated. The broadband backscattering Raman experimental results are given and discussed. The experimental results show that the system has an excellent application prospect for broadband and high-resolution Raman spectrum measurement.

    Reference
    [1]RAMAN C V, KRISHNAN K S. A new type of secondary radiation[J]. Nature, 1928, 121(3048):501-502.
    [2]QIN J K, LIAO P Y, SI M W, et al. Raman response and transport properties of tellurium atomic chains encapsulated in nanotubes[J]. Nature electronics, 2020, 3(3):141-147.
    [3]JAAFREH S, VALLER O, KREYENSCHMIDT J, et al. In vitro discrimination and classification of microbial flora of poultry using two dispersive Raman spectrometers (microscope and portable fiber-optic systems) in tandem with chemometric analysis[J]. Talanta, 2019, 202:411-425.
    [4]HOYOS L S, FAROLDI B, CORNAGLIA L. Reactivity of rice husk-derived lithium silicates followed by in situ Raman spectroscopy[J]. Journal of alloys and compounds, 2019, 778(25):699-711.
    [5]LIU J L, BAYANHESHIG, QI X D, et al. Backscattering Raman spectroscopy using multigrating spatial heterodyne Raman spectrometer[J]. Applied optics, 2018, 57(33):9735-9745.
    [6]QIU S F, LI M M, LIU J, et al. Study on the chemodrug-induced effect in nasopharyngeal carcinoma cells using laser tweezer Raman spectroscopy[J]. Biomedical optics express, 2020, 11(4):1819-1833.
    [7]ALATTAR N, DAUD H, MAJMAIE R A, et al. Surface-enhanced Raman scattering for rapid hematopoietic stem cell differentiation analysis[J]. Applied optics, 2018, 57(22):E184-E189.
    [8]AYMEN M, SAMI S, AHMED S, et al. Correlation between Raman spectroscopy and electrical conductivity of graphite/polyaniline composites reacted with hydrogen peroxide[J]. Journal of physics D:applied physics, 2013, 46(33):335103.
    [9]HEULER J, HE S, AMBARDAR S, et al. Point-of-care detection, characterization, and removal of chocolate bloom using a handheld Raman spectrometer[J]. Scientific reports, 2020, 10(1):9833.
    [10]HU G X, XIONG W, SHI H L, et al. Raman spectroscopic detection using a two dimensional spatial heterodyne spectrometer[J]. Optical engineering, 2015, 54(11):114101.
    [11]FOSTER M J, STOREY J, ZENTILE M A. Spatial heterodyne spectrometer for transmission Raman observations[J]. Optics express, 2017, 25(2):1598-1604.
    [12]QIU J, QI X D, LI X T, et al. Development of a spatial heterodyne Raman spectrometer with echelle-mirror structure[J]. Optics express, 2018, 26(9):11994-12006.
    [13]ZHANG R, BAYANHESHIG, YIN L, et al. Wavelength calibration model for prism-type echelle spectrometer by reversely solving prism’s refractive index in real time[J]. Applied optics, 2016, 55(15):4153-4158.
    [14]YIN L, BAYANHESHIG, YANG J, et al. High-accuracy spectral reduction algorithm for the echelle spectrometer[J]. Applied optics, 2016, 55(13):3574-3581.
    [15]ZHANG R, BAYANHESHIG, LI X T, et al. Establishment and correction of an echelle cross-prism spectrogram reduction model[J]. Optics communications, 2017, 403:401-407.
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ZHANG Rui, REN Wenyi, WANG He, WANG Yuanyuan, LIN Zhenkun, HAN Ziqi. Raman spectroscopic detection using a two-dimensional echelle spectrometer[J]. Optoelectronics Letters,2021,17(11):641-645

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  • Online: November 26,2021
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