Liquid phase epitaxy growth and visible emission of Tb3+,Gd3+:LiYF4 layers

被引:1
作者
Baillard, Amandine [1 ]
Brasse, Gurvan [1 ]
Loiko, Pavel [1 ]
Sole, Rosa Maria [2 ]
Aguilo, Magdalena [2 ]
Diaz, Francesc [2 ]
Mateos, Xavier [2 ]
Benayad, Abdelmjid [1 ]
Menard, Vivien [1 ]
Braud, Alain [1 ]
Camy, Patrice [1 ]
机构
[1] Univ Caen, Ctr Rech Ions Mat & Photon CIMAP, UMR 6252 CEA CNRS ENSICAEN, 6 Blvd Marechal Juin, F-14050 Caen 4, France
[2] Univ Rovira i Virgili URV, Fis & Cristallog Mat FiCMA, Marcel Li Domingo 1, Tarragona 43007, Spain
关键词
WAVE-GUIDE LASER; GREEN; TB3+; OPERATION; PHOSPHORS; CRYSTALS; IONS;
D O I
10.1364/OME.491569
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Single-crystalline layers of 12 at.% Tb3+, 5 at.% Gd3+:LiYF4 were grown by the liquid phase epitaxy method on (001) oriented bulk undoped LiYF4 substrates using LiF as a solvent. The growth temperature was 737-740 & DEG;C, the growth duration was 15 -25 min, and the layer thickness was 40-90 & mu;m. The structural, morphological, vibronic and spectroscopic properties of the layers were studied. Tb3+ ions were uniformly distributed in the layers with no diffusion into the substrate. Polarized Raman spectroscopy confirmed the orientation of the layers (growth along the [001] direction). Under excitation in the blue, the layers exhibited intense green emission. For the 5D4-, 7F5 Tb3+ transition, the peak stimulated-emission cross-section is 1.28 x 10-21 cm2 at 542.0 nm for at-polarization. The luminescence lifetime of the 5D4 Tb3+ state is 5.05 ms at room temperature. The crystal-field splitting of Tb3+ multiplets was determined at low temperature. The developed epitaxies are promising for green and yellow waveguide lasers.& COPY; 2023 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
引用
收藏
页码:2355 / 2368
页数:14
相关论文
共 50 条
  • [31] Growth phase diagram and upconversion luminescence properties of NaLuF4:Yb3+/Tm3+/Gd3+ nanocrystals
    Li, Yangyang
    Dong, Yanhui
    Aidilibike, Tuerxun
    Liu, Xiaohui
    Guo, Junjie
    Qin, Weiping
    RSC ADVANCES, 2017, 7 (70): : 44531 - 44536
  • [32] Rare Earth Centered Hybrid Materials: Tb3+ Covalently Bonded with La3+, Gd3+, Y3+ Through Sulfonamide Bridge and Luminescence Enhancement
    Sheng, Kai
    Yan, Bing
    Qiao, Xiao-Fei
    JOURNAL OF FLUORESCENCE, 2011, 21 (02) : 653 - 662
  • [33] Broadband conversion of ultraviolet to visible and near-infrared emission in Gd3+/Yb3+ codoped germanate glass
    Tao, Lili
    Zhou, Bo
    Bai, Gongxun
    Wang, Yonggang
    Hao, Jianhua
    Tsang, Yuen H.
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2013, 376 : 26 - 29
  • [34] Efficient three-photon luminescence with strong polarization dependence from a scintillating silicate glass co-doped with Gd3+ and Tb3+
    Li, Guang-Can
    Zhang, Cheng-Yun
    Deng, Hai-Dong
    Liu, Guang-Yin
    Lan, Sheng
    Qi-Qian
    Yang, Zhong-Min
    Gopal, Achanta Venu
    OPTICS EXPRESS, 2013, 21 (05): : 6020 - 6027
  • [35] Efficient sensitization of Tb3+ emission by Dy3+ in CaMoO4 phosphors.: Energy transfer, tunable emission and optical thermometry
    Li, Xinyue
    Dong, Mingbin
    Hu, Fangfang
    Qin, Yanguang
    Zhao, Lu
    Wei, Xiaotao
    Chen, Yonghu
    Duan, Changkui
    Yin, Min
    CERAMICS INTERNATIONAL, 2016, 42 (05) : 6094 - 6099
  • [36] Controlling the Two-Photon-Induced Photon Cascade Emission in a Gd3+/Tb3+-Codoped Glass for Multicolor Display
    Yuan, Mao-Hui
    Fan, Hai-Hua
    Li, Hui
    Lan, Sheng
    Tie, Shao-Long
    Yang, Zhong-Min
    SCIENTIFIC REPORTS, 2016, 6
  • [37] Controlled synthesis of Gd2(WO4)3 microstructures and their tunable photoluminescent properties after Eu3+/Tb3+ doping
    Zeng, Yubin
    Li, Zhengquan
    Wang, Limin
    Xiong, Yujie
    CRYSTENGCOMM, 2012, 14 (20): : 7043 - 7048
  • [38] Modeling of the Dynamics of Non-radiative Energy Transfer in Tm3+, Tb3+: LiYF4-Based Electronic Materials
    Castaneda-Miranda, A.
    Castano, V. M.
    JOURNAL OF ELECTRONIC MATERIALS, 2017, 46 (08) : 5107 - 5111
  • [39] A study of luminescence from Eu3+, Ce3+, Tb3+ and Ce3+/Tb3+ in new potassium gadolinium phosphate K3Gd5(PO4)6
    Meng, Fangui
    Zhang, Hongzhi
    Chen, Cuili
    Kim, Sun Il
    Seo, Hyo Jin
    Zhang, Xinmin
    JOURNAL OF ALLOYS AND COMPOUNDS, 2016, 671 : 150 - 156
  • [40] Photoluminescence and thermoluminescence properties of Tb3+ doped K3Gd(PO4)2 nanophosphor
    Gupta, Palvi
    Bedyal, A. K.
    Kumar, Vinay
    Khajuria, Y.
    Lochab, S. P.
    Pitale, S. S.
    Ntwaeaborwa, O. M.
    Swart, H. C.
    MATERIALS RESEARCH BULLETIN, 2014, 60 : 401 - 411