• Chinese Journal of Lasers
  • Vol. 49, Issue 1, 0101013 (2022)
Wei Wang1, Quan Gu1, Qinpeng Chen1, Bozhao Yin1, Guozhen Li1, Mang Wan2, Xiongjian Huang1、3、*, and Guoping Dong1、**
Author Affiliations
  • 1State Key Laboratory of Luminescent Materials and Devices, School of Materials Science and Engineering, South China University of Technology, Guangzhou, Guangdong 510640, China
  • 2Analytical and Testing Center, South China University of Technology, Guangzhou, Guangdong 510640, China
  • 3School of Physics and Optoelectronics, South China University of Technology, Guangzhou, Guangdong 510640, China
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    DOI: 10.3788/CJL202249.0101013 Cite this Article Set citation alerts
    Wei Wang, Quan Gu, Qinpeng Chen, Bozhao Yin, Guozhen Li, Mang Wan, Xiongjian Huang, Guoping Dong. Investigation of PbSe Quantum Dot-Doped Glass Fibers with Broadband Mid-Infrared Emission[J]. Chinese Journal of Lasers, 2022, 49(1): 0101013 Copy Citation Text show less
    DSC curve of as-prepared glass
    Fig. 1. DSC curve of as-prepared glass
    XRD patterns of as-prepared glass and PbSe quantum dot (QD)-doped glasses heat-treated at different temperatures for 5 h
    Fig. 2. XRD patterns of as-prepared glass and PbSe quantum dot (QD)-doped glasses heat-treated at  different temperatures for 5 h
    Absorption and photoluminescence spectra of as-prepared glass and PbSe QD-doped glasses heat-treated at different temperatures for 5 h. (a) Absorption spectra; (b) photoluminescence (PL) spectra excited by 808 nm laser
    Fig. 3. Absorption and photoluminescence spectra of as-prepared glass and PbSe QD-doped glasses heat-treated at different temperatures for 5 h. (a) Absorption spectra; (b) photoluminescence (PL) spectra excited by 808 nm laser
    Back scattering images and EPMA analysis of PbSe QD-doped precursor fiber cross-section. (a)Back scattering image of fiber cross-section; (b)(e) EPMA images of different elements in PbSe QD-doped precursor fiber cross-section; (f) partially enlarged back scattering image of fiber cross-section; (g) EPMA line scanning curves of fiber along dotted path in Fig.4(f)
    Fig. 4. Back scattering images and EPMA analysis of PbSe QD-doped precursor fiber cross-section. (a)Back scattering image of fiber cross-section; (b)(e) EPMA images of different elements in PbSe QD-doped precursor fiber cross-section; (f) partially enlarged back scattering image of fiber cross-section; (g) EPMA line scanning curves of fiber  along dotted path in Fig.4(f)
    Raman spectra of as-prepared glass and precursor fiber cores, heat-treated PbSe QD-doped glass, and PbSe QD-doped glass fiber core and cladding
    Fig. 5. Raman spectra of as-prepared glass and precursor fiber cores, heat-treated PbSe QD-doped glass, and  PbSe QD-doped glass fiber core and cladding
    TEM image and size distribution of PbSe QD-doped glass fiber after heat treatment. (a) TEM image; (b) size distribution of PbSe QDs in glass fiber
    Fig. 6. TEM image and size distribution of PbSe QD-doped glass fiber after heat treatment. (a) TEM image; (b) size distribution of PbSe QDs in glass fiber
    PL spectra of PbSe QD-doped fiber excited by 808 nm laser. (a) PL spectra of PbSe QD-doped fiber heat-treated at different temperatures for 5 h; (b) PL spectra of fiber heat-treated at 440 ℃ for different durations; (c) variation of PL peak intensity of PbSe QD-doped glass fibers heat-treated at 440 ℃ with fiber length; (d) PL spectra of different batches of PbSe QD-doped glass and optical fibers heat-treated at different temperatures
    Fig. 7. PL spectra of PbSe QD-doped fiber excited by 808 nm laser. (a) PL spectra of PbSe QD-doped fiber heat-treated at different temperatures for 5 h; (b) PL spectra of fiber heat-treated at 440 ℃ for different durations; (c) variation of PL peak intensity of PbSe QD-doped glass fibers heat-treated at 440 ℃ with fiber length; (d) PL spectra of different  batches of PbSe QD-doped glass and optical fibers heat-treated at different temperatures
    Optical loss of as-prepared and heat-treated PbSe QD-doped fiber at 1530 nm measured by cutback method
    Fig. 8. Optical loss of as-prepared and heat-treated PbSe QD-doped fiber at 1530 nm measured by cutback  method
    Wei Wang, Quan Gu, Qinpeng Chen, Bozhao Yin, Guozhen Li, Mang Wan, Xiongjian Huang, Guoping Dong. Investigation of PbSe Quantum Dot-Doped Glass Fibers with Broadband Mid-Infrared Emission[J]. Chinese Journal of Lasers, 2022, 49(1): 0101013
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