• Chinese Journal of Lasers
  • Vol. 50, Issue 6, 0601002 (2023)
Xingchen Yang1, Zhaoqin Zhou1, Yi Man2, Hui Xu2、aff******, and Dan Zhang1、aff***
Author Affiliations
  • 1School of Electronic Science and Engineering (National Model Microelectronics College), Xiamen University, Xiamen 361005, Fujian, China
  • 2Key Laboratory of Functional Inorganic Material Chemistry, Ministry of Education, School of Chemistry, Chemical Engineering and Materials, Heilongjiang University, Harbin 150080, Heilongjiang, China
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    DOI: 10.3788/CJL220639 Cite this Article Set citation alerts
    Xingchen Yang, Zhaoqin Zhou, Yi Man, Hui Xu, Dan Zhang. Optical Properties of Neodymium-Doped Polymer Optical Waveguides Based on Light-Emitting Diode Pumping[J]. Chinese Journal of Lasers, 2023, 50(6): 0601002 Copy Citation Text show less
    Absorption spectra of Nd(TTA)3DBTDPO powder and NdCl3·6H2O powder
    Fig. 1. Absorption spectra of Nd(TTA)3DBTDPO powder and NdCl3·6H2O powder
    Emission spectra of Nd(TTA)3DBTDPO doped PMMA film pumped by 405 nm LEDs with different powers
    Fig. 2. Emission spectra of Nd(TTA)3DBTDPO doped PMMA film pumped by 405 nm LEDs with different powers
    Characterizations of waveguide structure. (a) Section view of BK-7 glass waveguide; (b) section view of SU-8 polymer waveguide; (c) top SEM view of BK-7 glass waveguide; (d) section view of SU-8 polymer waveguide covering active upper cladding
    Fig. 3. Characterizations of waveguide structure. (a) Section view of BK-7 glass waveguide; (b) section view of SU-8 polymer waveguide; (c) top SEM view of BK-7 glass waveguide; (d) section view of SU-8 polymer waveguide covering active upper cladding
    Measurement system for gain performance. (a) Diagram of experimental setup; (b) diagram of signal light transmission in evanescent waveguide
    Fig. 4. Measurement system for gain performance. (a) Diagram of experimental setup; (b) diagram of signal light transmission in evanescent waveguide
    Test results for gain in BK-7 glass waveguide. (a) Relationship between output signal intensity and pump power when 405 nm LED is used for pumping; (b) relationship between relative optical gain and pump power when LEDs with different wavelengths are used for pumping; (c) spectra of LED pump light at different wavelengths
    Fig. 5. Test results for gain in BK-7 glass waveguide. (a) Relationship between output signal intensity and pump power when 405 nm LED is used for pumping; (b) relationship between relative optical gain and pump power when LEDs with different wavelengths are used for pumping; (c) spectra of LED pump light at different wavelengths
    Change of signal intensity at waveguide output end before and after 405 nm LED pumping
    Fig. 6. Change of signal intensity at waveguide output end before and after 405 nm LED pumping
    Schematics of energy level transition of Nd3+ ions. (a) Schematic of energy transfer system for organic ligand and Nd 3+ ion; (b) schematic of Nd3+ ion transition under pumping of different LEDs
    Fig. 7. Schematics of energy level transition of Nd3+ ions. (a) Schematic of energy transfer system for organic ligand and Nd 3+ ion; (b) schematic of Nd3+ ion transition under pumping of different LEDs
    Xingchen Yang, Zhaoqin Zhou, Yi Man, Hui Xu, Dan Zhang. Optical Properties of Neodymium-Doped Polymer Optical Waveguides Based on Light-Emitting Diode Pumping[J]. Chinese Journal of Lasers, 2023, 50(6): 0601002
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