• Opto-Electronic Engineering
  • Vol. 39, Issue 3, 113 (2012)
[in Chinese], [in Chinese], and [in Chinese]
Author Affiliations
  • [in Chinese]
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    DOI: 10.3969/j.issn.1003-501x.2012.03.020 Cite this Article
    [in Chinese], [in Chinese], [in Chinese]. Upconversion Spectroscopic Properties of Er3+ in Bismuth-germanate Glass[J]. Opto-Electronic Engineering, 2012, 39(3): 113 Copy Citation Text show less
    References

    [1] Zellmer H,Riedel P,Tünnermann A. Visible upconversion lasers in praseodymium-ytterbium-doped fibers [J]. Appl. Phys.B(S0946-2171),1999,69:417-421.

    [2] YANG Jian-hu,DAI Shi-xun,JIANG Zhong-hong. Upconversion emission of rare earth ions and its recent developments [J].Progress in Physics,2003,23(3):284-298.

    [3] RUAN Yong-feng,XU Qiang,LIN Lin. Progress in technology and materials of blue-green lasers [J]. Journal of Systhetic Crystals,2002,31(3):266-276.

    [4] ZHANG Yi-fei,YANG Hui,WANG Xiao-tong. Design of Parameters for M issile-borne Laser Altimeter with Dual-wavelength Outputs [J]. Opto-Electronic Engineering,2011,38(6):12-17.

    [5] SONG Feng,CHEN Xiao-bo,ZHANG Guang-yin. Upconversion fiber lasers doped with rare-earth ions [J]. Laser & Optro.Progress,1997,34(5):1-5.

    [6] CHEN Xiao-bo,ZHANG Guang-yin,SONG Zeng-fu. Research and development about upconversion luminescence and lasers of rare-earth ions materials [J]. Spectroscopy and Spectral Analysis,1995,15(3):1-6.

    [7] XU Shi-qing,MA Hong-ping,ZHANG Li-yan,et al. Effect of OH— on upconversion luminescence of Tm3+/yb3+- codoped tellurate glasses [J]. Opto-Electronic Engineering,2006,33(12):119-122.

    [8] Flohic M P Le,Allain J Y,Stephan G M,et al. Room-temperature continuous-wave upconversion laser at 455nm in a Tm3+ fluorozirconate fiber [J]. Optics Letters(S0146-9592),1994,19(23):1982-1984.

    [9] Paschotta R,Barber P R,Tropper A C,et al. Characterization and modeling of thulium:ZBLAN blue upconversion fiber lasers[J]. Journal of the Optical Society of America B(S0740-3224),1997,14(5):1213-1218.

    [10] ZHOU Ya-xun,WANG Da-gang,CHEN Fen, et al. Transient Response of Er3+ Fluorescence in Bismuth.Based Glass under 975 nm-pulsed Excitation [J]. Opto-Electronic Engineering,2010,37(3):99-104.

    [11] Tomoharu Hasegawa. Optical Properties of Bi2O3–TeO2–B2O3 Glasses [J]. Journal of Non-Crystalline Solids(S0022-3093),2011,357(5):2857–2862.

    [12] SONG Shu-feng,WEN Zhao-yin,LIU Yu. The effect of substitution of Bi2O3 for alkali oxides on thermal properties,structure and wetting behavior of the borosilicate glass [J]. Materials Letters(S0167-577X),2010,64(2):1025–1027.

    [13] HE Feng,WANG Jun,DENG Da-wei. Effect of Bi2O3 on structure and wetting studies of Bi2O3–ZnO–B2O3 glasses [J].Journal of Alloys and Compounds(S0925-8388),2011,509(3):6332-6336.

    [14] GUO Xin,LI Hong-jun,SU Liang-bi,et al. Study on multiple near-infrared luminescent centers and effects of aluminum ions in Bi2O3-GeO2 glass system [J]. Optical Materials(S0925-3467),2012,34(11):675-678.

    [15] Judd B R. Optical absorption intensities of rare-earth ions [J]. Physics Review(S1050-2947),1962,127(3):750-761.

    [16] Ofelt G S. Intensities of crystal spectra of rare-earth ions [J]. Journal of Chemical Physics(S0021-9606),1962,37(3):511-520.

    [17] Zou X,Izumitani T. Spectroscopic properties and mechanisms of excited state absorption and energy transfer upconversion for Er3+-doped glasses [J]. Journal of Non-Crystalline Solids(S0022-3093),1993,162(1):68-80.

    [18] Tanabe S. Optical transitions of rare earth ions for amplifiers:how the local structure works in glass [J]. Journal of Non-Crystalline Solids(S0022-3093),1999,259(1/3):1-9.

    [19] Lines M E,Miller A E,Nassau K,et al. Absolute raman intensities in glasses:II. Germania-based heavy metal oxides and global criteria [J]. Journal of Non-Crystalline Solids(S0022-3093),1987,89(1/2):163-180.

    [20] Hwa L G,Chang Y R,Szu S P. Optical and physical properties of lanthanum gallogermanate glasses [J]. Journal of Non-Crystalline Solids(S0022-3093),1998,231(3):222-226.

    [21] Pan Z,Morgan S H,Loper A. Infrared to visible upconversion in Er3+-doped-lead-germanate glass:Effects of Er3+ ion concentration [J]. Journal of Applied Physics(S0021-8979),1995,77(9):4688-4692.

    [22] Adam J L. Fluoride glass research in France:fundamentals and applications [J]. Journal of Fluorine Chemistry(S0022-1139),2001,107(2):265-270.

    [23] Miyakawa T,Dexter D L. Phonon sidebands,multiphonon relaxation of excited states,and phonon-assisted energy transfer between ions in solids [J]. Physical Review B(S1098-0121),1970,1(7):2961-2969.

    [24] Huang L H,Liu X R,Xu W,et al. Infrared and visible luminescence properties of Er3+ and Yb3+ ions codoped Ca3Al2Ge3O12 glass under 978 nm diode laser excitation [J]. Journal of Applied Physics(S0021-8979),2001,90(11):5550-5553.

    [25] Shinn M D,Sibley W A,Drexhage M G,et al. Optical transitions of Er3+ ions in fluorozirconate glass [J]. Physical Review B(S1098-0121),1983,27(11):6635-6648.

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    [in Chinese], [in Chinese], [in Chinese]. Upconversion Spectroscopic Properties of Er3+ in Bismuth-germanate Glass[J]. Opto-Electronic Engineering, 2012, 39(3): 113
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