Chinese Journal of Lasers, Volume. 44, Issue 9, 903001(2017)

Luminescence Properties of Yb3+-Doped Bismuthate Glass

Wang Tao1,2、*, Fan Huiyan1, Zhao Guoying1, Cheng Jimeng1, Chen Wei1, Hu Lili1, Guzik Malgorzata3, and Boulon Georges4
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • 4[in Chinese]
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    References(35)

    [1] [1] Bale S, Rahman S. Glass structure and transport properties of Li2O containing zinc bismuthate glasses[J]. Optical Materials, 2008, 31(2): 333-337.

    [2] [2] Dyamant I, Itzhak D, Hormadaly J. Thermal properties and glass formation in the SiO2-B2O3-Bi2O3-ZnO quaternary system[J]. Journal of Non-Crystalline Solids, 2005, 351(43/44/45): 3503-3507.

    [3] [3] Dianov E M, Dvoyrin V V, Mashinsky V M, et al. CW bismuth fibre laser[J]. Quantum Electronics, 2005, 35(12): 1083-1084.

    [4] [4] Qiu J R. Bi-doped glass for photonic devices[J]. International Journal of Applied Glass Science, 2015, 6(3): 275-286.

    [5] [5] Yu P S, Su L B, Cheng J H, et al. Broadband infrared luminescence in Yb-doped Bi2O3-GeO2 glasses[J]. Infrared Physics & Technology, 2016, 74: 53-56.

    [6] [6] Lakshminarayana G, Ruan J, Qiu J R. NIR luminescence from Er-Yb, Bi-Yb and Bi-Nd codoped germanate glasses for optical amplification[J]. Journal of Alloys and Compounds, 2009, 476(1/2): 878-883.

    [7] [7] Sheng Q C, Wang X L, Chen D P. Enhanced broadband near-infrared luminescence and its origin in Yb/Bi co-doped borophosphate glasses and fibers[J]. Journal of Quantitative Spectroscopy and Radiative Transfer, 2014, 141: 9-13.

    [8] [8] Li C, Qiu J B, Song Z G, et al. Effects of Yb2O3 on the NIR emission performance of Bi-Yb codoped aluminophosphsilicate glasses[J]. Journal of Non-Crystalline Solids, 2014, 383(1): 169-172.

    [9] [9] Wang R F, Liu J, Zhang Z. Luminescence and energy transfer progress in Bi-Yb co-doped germanate glass[J]. Journal of Alloys and Compounds, 2016, 688: 332-336.

    [10] [10] Sathi Z M, Zhang J Z, Luo Y H, et al. Improving broadband emission within Bi/Er doped silicate fibres with Yb co-doping[J]. Optical Materials Express, 2015, 5(10): 2096-2105.

    [11] [11] Chen Mingsheng, Yan Binbin, Sang Xinzhu, et al. Broadband optical amplification properties of bismuth-doped optical fiber[J]. Chinese J Lasers, 2015, 42(4): 0405004.

    [12] [12] Li Chunsheng, Yan Binbin, Wang Dapeng, et al. Fiber Bragg grating sensing by ultra-broadband light source based on bismuth-erbium co-doped fiber[J]. Chinese J Lasers, 2017, 44(1): 0110003.

    [13] [13] Zou X L, Toratani H. Evaluation of spectroscopic properties of Yb3+-doped glasses[J]. Physical Review B, 1995, 52(22): 15889-15897.

    [14] [14] Payne S A, Chase L L, Smith L K, et al. Infrared cross-section measurements for crystals doped with Er3+, Tm3+, and Ho3+[J]. IEEE Journal of Quantum Electronics, 1992, 28(11): 2619-2630.

    [15] [15] Balaji S, Biswas K, Sontakke A D, et al. Al2O3 influence on structural, elastic, thermal properties of Yb3+ doped Ba-La-tellurite glass: evidence of reduction in self-radiation trapping at 1 μm emission[J]. Spectrochimica Acta Part A: Molecular Biomolecular Spectroscopy, 2014, 133: 318-325.

    [16] [16] Dai Shixun, Yang Jianhu, Dai Nengli, et al. Effect of radiation trapping on spectroscopic properties of Yb3+-doped phosphate glasses[J]. Acta Physica Sinica, 2003, 52(6): 1533-1539.

    [17] [17] Jacinto C, Oliveira S L, Nunes L A O, et al. Thermal lens study of the OH- influence on the fluorescence efficiency of Yb3+-doped phosphate glasses[J]. Applied Physics Letters, 2005, 86(7): 071911.

    [19] [19] Wang P F, Li W N, Peng B, et al. Effect of dehydration techniques on the fluorescence spectral features and OH absorption of heavy metals containing fluoride tellurite glasses[J]. Journal of Non-Crystalline Solids, 2012, 358(4): 788-793.

    [20] [20] Santos I M G, Moreira R C M, de Souza A G, et al. Ceramic crucibles: a new alternative for melting of PbO-BiO1.5-GaO1.5 glasses[J]. Journal of Non-Crystalline Solids, 2003, 319(3): 304-310.

    [21] [21] Lezal D, Pedlikova J, Kostka P, et al. Heavy metal oxide glasses: preparation and physical properties[J]. Journal of Non-Crystalline Solids, 2001, 284(1/2/3): 288-295.

    [22] [22] Zhang Long, Lin Fengying, Hu Hefang. Spectroscopic properties of Yb3+-doped tetraphosphate glass[J]. Acta Physica Sinica, 2001, 50(7): 1378-1384.

    [23] [23] Fang Y Z, Hu L L, Liao M S, et al. Effect of bismuth oxide introduction on spectroscopic properties of Er3+/Yb3+ co-doped aluminophosphate glasses[J]. Journal of Alloys and Compounds, 2008, 457(1/2): 19-23.

    [24] [24] Kumar G A, Martinez A, De La Rosa E. Stimulated emission and radiative properties of Nd3+ ions in barium fluorophosphate glass containing sulphate[J]. Journal of Luminescence, 2002, 99(2): 141-148.

    [25] [25] Chen Y J, Huang Y D, Luo Z D. Spectroscopic properties of Yb3+ in bismuth borate glasses[J]. Chemical Physics Letters, 2003, 382(3/4): 481-488.

    [26] [26] Allain J Y, Monerie M, Poignant H. Ytterbium-doped fluoride fibre laser operating at 1.02 μm[J]. Electronics Letters, 1992, 28(11): 988-989.

    [27] [27] Zou X L, Toratani H. Spectroscopic properties and energy transfers in Tm3+ singly- and Tm3+/Ho3+ doubly-doped glasses[J]. Journal of Non-Crystalline Solids, 1996, 195(1/2): 113-124.

    [28] [28] Li W W, Cheng J M, Zhao G Y, et al. Violet-green excitation for NIR luminescence of Yb3+ ions in Bi2O3-B2O3-SiO2-Ga2O3 glasses[J]. Optics Express, 2014, 22(8): 8831-8842.

    [29] [29] Bajaj A, Khanna A, Chen B H, et al. Structural investigation of bismuth borate glasses and crystalline phases[J]. Journal of Non-Crystalline Solids, 2009, 355(1): 45-53.

    [30] [30] Marzouk M A. Optical characterization of some rare earth ions doped bismuth borate glasses and effect of gamma irradiation[J]. Journal of Molecular Structure, 2012, 1019(28): 80-90.

    [31] [31] Liu X Y, Guo H, Liu Y, et al. Thermal quenching and energy transfer in novel Bi3+/Mn2+ co-doped white-emitting borosilicate glasses for UV LEDs[J]. Journal of Materials Chemistry C, 2016, 4(13): 2506-2512.

    [32] [32] Shen Y L, Sheng Q C, Liu S, et al. Effect of aluminum co-doping on the formation of Yb2+ in ytterbium-doped high silica glass[J]. Chinese Optics Letters, 2013, 11(5): 051601.

    [33] [33] Verma R K, Rai A, Kumar K, et al. Up and down conversion fluorescence studies on combustion synthesized Yb3+/Yb2+∶MO-Al2O3 (M=Ca, Sr and Ba) phosphors[J]. Journal of Luminescence, 2010, 130(7): 1248-1253.

    [34] [34] Xia C M, Zhou G Y, Zhang W, et al. Influence of Yb2+ ions on the optical properties of Yb3+/Ho3+ co-doped silica glass synthesized by non-chemical vapor deposition method[J]. Journal of Non-Crystalline Solids, 2015, 421: 20-23.

    [35] [35] Kaczmarek S M, Leniec G, Boulon G. EPR results and Raman spectroscopy as a complementary characterization of isolated Yb ions and Yb pairs in CaF2∶Yb single crystals[J]. Journal of Alloys and Compounds, 2008, 451(1/2): 116-121.

    CLP Journals

    [1] Zhao Haiqin, Wang Linxiang, Tuo Juan, Ye Ying, Li Guojiao. Preparation and Luminescent Properties of Li+/Bi3+ Co-Doped Lu2O3∶Ho3+ Phosphors[J]. Laser & Optoelectronics Progress, 2018, 55(8): 81602

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    Wang Tao, Fan Huiyan, Zhao Guoying, Cheng Jimeng, Chen Wei, Hu Lili, Guzik Malgorzata, Boulon Georges. Luminescence Properties of Yb3+-Doped Bismuthate Glass[J]. Chinese Journal of Lasers, 2017, 44(9): 903001

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    Paper Information

    Category: materials and thin films

    Received: Apr. 25, 2017

    Accepted: --

    Published Online: Sep. 7, 2017

    The Author Email: Tao Wang (semarhai@qq.com)

    DOI:10.3788/cjl201744.0903001

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