• 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
    References

    [1] H. Mustroph, M. Stollenwerk, V. Bressau. Current developments in optical data storage with organic dyes. Angew. Chem. Int. Ed., 45, 2016(2006).

    [2] M. Pawlicki, H. A. Collins, R. G. Denning, H. L. Anderson. Two-photon absorption and the design of two-photon dyes. Angew. Chem. Int. Ed., 48, 3244(2009).

    [3] J. Xu, S. Tanabe. Persistent luminescence instead of phosphorescence: history, mechanism, and perspective. J. Lumin., 205, 581(2019).

    [4] Y. Zhuang, D. Chen, W. Chen, W. Zhang, X. Su, R. Deng, Z. An, H. Chen, R. J. Xie. X-ray-charged bright persistent luminescence in NaYF4:Ln3+@NaYF4 nanoparticles for multidimensional optical information storage. Light Sci. Appl., 10, 132(2021).

    [5] Q. Yang, R. Abdurahman, T. Yang, X. Sun. Wavelength-tunable barium gallate persistent luminescence phosphors with enhanced luminescence. Chin. Opt. Lett., 20, 031602(2022).

    [6] S. Lin, H. Lin, C. Ma, Y. Cheng, S. Ye, F. Lin, R. Li, J. Xu, Y. Wang. High-security-level multi-dimensional optical storage medium: nanostructured glass embedded with LiGa5O8:Mn2+ with photostimulated luminescence. Light Sci. Appl., 9, 22(2020).

    [7] W. Li, Y. Zhuang, P. Zheng, T. L. Zhou, J. Xu, J. Ueda, S. Tanabe, L. Wang, R. J. Xie. Tailoring trap depth and emission wavelength in Y3Al5-xGaxO12:Ce3+,V3+ phosphor-in-glass films for optical information storage. ACS Appl. Mater. Interfaces, 10, 27150(2018).

    [8] J. Ueda, K. Kuroishi, S. Tanabe. Bright persistent ceramic phosphors of Ce3+-Cr3+-codoped garnet able to store by blue light. Appl. Phys. Lett., 104, 101904(2014).

    [9] Z. Pan, Y. Y. Lu, F. Liu. Sunlight-activated long-persistent luminescence in the near-infrared from Cr3+-doped zinc gallogermanates. Nat. Mater., 11, 58(2012).

    [10] Z. Liu, L. Zhao, W. Chen, X. Fan, X. Yang, S. Tian, X. Yu, J. Qiu, X. Xu. Multiple anti-counterfeiting realized in NaBaScSi2O7 with a single activator of Eu2+. J. Mater. Chem. C, 6, 11137(2018).

    [11] J. Shi, X. Sun, J. Li, H. Man, J. Shen, Y. Yu, H. Zhang. Multifunctional near infrared-emitting long-persistence luminescent nanoprobes for drug delivery and targeted tumor imaging. Biomaterials, 37, 260(2015).

    [12] C. Wang, Y. Jin, Y. Lv, G. Ju, D. Liu, L. Chen, Z. Li, Y. Hu. Trap distribution tailoring guided design of super-long-persistent phosphor Ba2SiO4:Eu2+,Ho3+ and photostimulable luminescence for optical information storage. J. Mater. Chem. C, 6, 6058(2018).

    [13] H. Liu, B. Feng, L. Luo, C. Han, P. A. Tanner. Near infrared photostimulated persistent luminescence and information storage of SrAl2O4:Eu2+, Dy3+ phosphor. Opt. Mater. Express, 6, 3375(2016).

    [14] M. Deng, Q. Liu, Y. Zhang, C. Wang, X. Guo, Z. Zhou, X. Xu. Novel co-doped Y2GeO5:Pr3+,Tb3+: deep trap level formation and analog binary optical storage with submicron information points. Adv. Opt. Mater., 9, 2002090(2021).

    [15] S. Lin, H. Lin, Q. Huang, Y. Cheng, J. Xu, J. Wang, X. Xiang, C. Wang, L. Zhang, Y. Wang. A photostimulated BaSi2O5:Eu2+,Nd3+ phosphor-in-glass for erasable-rewritable optical storage medium. Laser Photonics Rev., 13, 1900006(2019).

    [16] J. Li, Y. Wu, Y. Pan, W. Liu, L. Huang, J. Guo. Fabrication, microstructure and properties of highly transparent Nd:YAG laser ceramics. Opt. Mater., 31, 6(2008).

    [17] J. Li, Y. Wu, Y. Pan, H. Kou, Y. Shi, J. Guo. Densification and microstructure evolution of Cr4+,Nd3+:YAG transparent ceramics for self-Q-switched laser. Ceram. Int., 34, 1675(2008).

    [18] B. Yao, J. Yuan, J. Li, T. Dai, X. Duan, Y. Shen, Z. Cui, Y. Pan. High-power Cr2+:ZnS saturable absorber passively Q-switched Ho:YAG ceramic laser and its application to pumping of a mid-IR OPO. Opt. Lett., 40, 348(2015).

    [19] R. Zhang, H. Lin, Y. Yu, D. Chen, J. Xu, Y. Wang. A new-generation color converter for high-power white LED: transparent Ce3+:YAG phosphor-in-glass. Laser Photonics Rev., 8, 158(2014).

    [20] D. Chen, W. Xiang, X. Liang, J. Zhong, H. Yu, M. Ding, H. Lu, Z. Ji. Advances in transparent glass-ceramic phosphors for white light-emitting diodes: a review. J. Eur. Ceram. Soc., 35, 859(2015).

    [21] B. Sun, B. Jiang, L. Zhang. Samarium and manganese incorporation to improve color rendering of LuAG:Ce3+ phosphor ceramics for laser-driven lighting: a color-tunable and energy transfer study. J. Mater. Chem. C, 9, 16468(2021).

    [22] L. Wang, H. Yang, Y. Zhang, Y. Liang, J. Zhang, E. Mei, F. Xu, J. Long, P. Yu, W. Xiang. All-inorganic high efficiency LuAG:Ce3+ converter based on phosphor-in-glass for laser diode lighting. J. Alloy Compd., 892, 161882(2022).

    [23] C. Wang, M. Deng, Y. Zhang, Q. Liu, Z. Zhou, X. Xu, H. He. Multicomponent garnet phosphor (LuYGd)(Al4Ga)O12:Ce3+,V3+: trap modulation via reductive gas annealing and an optical information storage property. Opt. Mater. Express, 11, 2256(2021).

    [24] Y. Zhuang, Y. Lv, L. Wang, W. Chen, T. Zhou, T. Takeda, N. Hirosaki, R. Xie. Trap depth engineering of SrSi2O2N2:Ln2+,Ln3+(Ln2+ = Yb, Eu; Ln3+ = Dy, Ho, Er) persistent luminescence materials for information storage applications. ACS Appl. Mater. Interfaces, 10, 1854(2018).

    [25] A. J. J. Bos. High sensitivity thermoluminescence dosimetry. Nucl. Instrum. Meth. B, 184, 3(2001).

    [26] L. Yuan, Y. Jin, Y. Su, H. Wu, Y. Hu, S. Yang. Optically stimulated luminescence phosphors: principles, applications, and prospects. Laser Photonics Rev., 14, 2000123(2020).

    [27] C. Wang, Y. Jin, J. Zhang, X. Li, H. Wu, R. Zhang, Q. Yao, Y. Hu. Linear charging-discharging of an ultralong UVA persistent phosphor for advanced optical data storage and wide-wavelength-range detector. Chem. Eng. J., 453, 139558(2023).

    [28] Y. Jin, Y. Hu, L. Yuan, L. Chen, H. Wu, G. Ju, H. Duan, Z. Mu. Multifunctional near-infrared emitting Cr3+-doped Mg4Ga8Ge2O20 particles with long persistent and photostimulated persistent luminescence, and photochromic properties. J. Mater. Chem. C, 4, 6614(2016).

    [29] D. Liu, L. Yuan, Y. Jin, H. Wu, Y. Lv, G. Xiong, G. Ju, L. Chen, S. Yang, Y. Hu. Tailoring multidimensional traps for rewritable multilevel optical data storage. ACS Appl. Mater. Interfaces, 11, 35023(2019).

    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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