• Chinese Optics Letters
  • Vol. 21, Issue 4, 041602 (2023)
Junwei Zhang1、2, Miao Zhao1、2, Qiao Hu1、2, Hao Ruan1、*, and Jing Wen3
Author Affiliations
  • 1Photonic Integrated Circuits Center, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
  • 2Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
  • 3Engineering Research Center of Optical Instrument and Systems, Ministry of Education, and Shanghai Key Laboratory of Modern Optical System, University of Shanghai for Science and Technology, Shanghai 200093, China
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    DOI: 10.3788/COL202321.041602 Cite this Article Set citation alerts
    Junwei Zhang, Miao Zhao, Qiao Hu, Hao Ruan, Jing Wen. Y3Al5O12:Ce3+ fluorescent ceramic for optical data storage[J]. Chinese Optics Letters, 2023, 21(4): 041602 Copy Citation Text show less
    Preparation flow chart of fluorescent ceramics. (a) Mixing and (b) ball milling and drying of raw materials, (c) filtering and shaping of samples, and (d) vacuum sintering of ceramics.
    Fig. 1. Preparation flow chart of fluorescent ceramics. (a) Mixing and (b) ball milling and drying of raw materials, (c) filtering and shaping of samples, and (d) vacuum sintering of ceramics.
    XRD patterns of YAG:xCe (x = 0.011, 0.013, 0.015, and 0.017) and Y3Al5O12 (PDF#33-0040).
    Fig. 2. XRD patterns of YAG:xCe (x = 0.011, 0.013, 0.015, and 0.017) and Y3Al5O12 (PDF#33-0040).
    (a) PLE and PL spectra of YAG:xCe (x = 0.011, 0.013, 0.015, and 0.017); (b) TL curves of YAG:xCe3+; (c) TL curves with different heating rates of YAG:0.015Ce3+; (d) ln(Tm2/β) versus 1/(kBTm) based on Eq. (1), originating from two peaks (T1 and T2) at TL curve of YAG:0.015Ce3+.
    Fig. 3. (a) PLE and PL spectra of YAG:xCe (x = 0.011, 0.013, 0.015, and 0.017); (b) TL curves of YAG:xCe3+; (c) TL curves with different heating rates of YAG:0.015Ce3+; (d) ln(Tm2/β) versus 1/(kBTm) based on Eq. (1), originating from two peaks (T1 and T2) at TL curve of YAG:0.015Ce3+.
    Schematic of the optical storage mechanism of YAG:Ce.
    Fig. 4. Schematic of the optical storage mechanism of YAG:Ce.
    (a) Schematic illustration of the information storage and readout in ceramics; (b) photographs of YAG:Ce3+ ceramics under (i) natural light; (ii) 254 nm Hg UV light; (iii) and (iv) under 254 nm UV light for 5 min and heated to 300°C showing stars, flower, “S”, “I”, “O” and “M”, with photomask covering the sample.
    Fig. 5. (a) Schematic illustration of the information storage and readout in ceramics; (b) photographs of YAG:Ce3+ ceramics under (i) natural light; (ii) 254 nm Hg UV light; (iii) and (iv) under 254 nm UV light for 5 min and heated to 300°C showing stars, flower, “S”, “I”, “O” and “M”, with photomask covering the sample.
    Junwei Zhang, Miao Zhao, Qiao Hu, Hao Ruan, Jing Wen. Y3Al5O12:Ce3+ fluorescent ceramic for optical data storage[J]. Chinese Optics Letters, 2023, 21(4): 041602
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