Journal of Synthetic Crystals, Volume. 50, Issue 11, 2013(2021)

Growth and Properties of Gd3+/Yb3+ Co-Doped Yttrium Aluminate Crystals

TAN Huiyu*, WANG Rui, ZHANG Peixiong, YIN Hao, LI Zhen, and CHEN Zhenqiang
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    References(16)

    [2] [2] KRUPKE W F. Ytterbium solid-state lasers. The first decade[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2000, 6(6): 1287-1296.

    [3] [3] WU K, HAO L Z, ZHANG H J, et al. Lu3Ga5O12 crystal: exploration of new laser host material for the ytterbium ion[J]. Josa B, 2012, 29(9): 2320-2328.

    [4] [4] BOUR D P, GILBERT D B, FABIAN K B, et al. Low degradation rate in strained InGaAs/AlGaAs single quantum well lasers[J]. IEEE Photonics Technology Letters, 1990, 2(3): 173-174.

    [6] [6] LACOVARA P, CHOI H K, WANG C A, et al. Room-temperature diode-pumped Yb∶YAG laser[J]. Optics Letters, 1991, 16(14): 1089-1091.

    [7] [7] FAN T Y, KLUNK S, HENEIN G. Diode-pumped Q-switched Yb∶YAG laser[J]. Optics Letters, 1993, 18(6): 423-425.

    [8] [8] YE J, MA L S, HALL J L. High-resolution frequency standard at 1030 nm for Yb∶YAG solid-state lasers[J]. Josa B, 2000, 17(6): 927-931.

    [10] [10] CHEN N, ZHANG P X, YIN H, et al. Near infrared broadband emission of a new bismuth-doped Gd0.1Y0.9AlO3 crystal[J]. Infrared Physics & Technology, 2018, 94: 214-218.

    [11] [11] BOUCHER M, MUSSET O, BOQUILLON J P, et al. Multiwatt CW diode end-pumped Nd∶YAP laser at 1.08 and 1.34 μm: influence of Nd doping level[J]. Optics Communications, 2002, 212(1/2/3): 139-148.

    [12] [12] ZHU H Y, ZHANG G, HUANG C H, et al. 6.2 W laser-diode end-pumped continuous-wave Nd∶YAlO3 laser at 1.34 μm[J]. Optics Communications, 2011, 284(12): 2985-2987.

    [13] [13] ZHOU H Q, ZHU S Q, LI Z, et al. Investigation on 1.0 and 1.3 μm laser performance of Nd3+∶GYAP crystal[J]. Optics & Laser Technology, 2019, 119: 105601.

    [18] [18] CHNAIS S, DRUON F, BALEMBOIS F, et al. Diode-pumped Yb∶GGG laser: comparison with Yb∶YAG[J]. Optical Materials, 2003, 22(2): 99-106.

    [19] [19] ZENG X H, ZHAO G J, XU X D, et al. Comparison of spectroscopic parameters of 15at% Yb∶YAlO3 and 15at% Yb∶Y3Al5O12[J]. Journal of Crystal Growth, 2005, 274(1/2): 106-112.

    [20] [20] DONG J, BASS M, MAO Y L, et al. Dependence of the Yb3+ emission cross section and lifetime on temperature and concentration in yttrium aluminum garnet[J]. Josa B, 2003, 20(9): 1975-1979.

    [21] [21] DI J Q, XU X D, XIA C T, et al. Crystal growth, polarized spectra, and laser performance of Yb∶CaGdAlO4 crystal[J]. Laser Physics, 2016, 26(4): 045803.

    [22] [22] ZHONG D G, TENG B, KONG W J, et al. Growth, structure, spectroscopic and continuous-wave laser properties of a new Yb∶GdYCoB crystal[J]. Journal of Alloys and Compounds, 2017, 692: 413-419.

    [23] [23] BOULON G, GUYOT Y, CANIBANO H, et al. Characterization and comparison of Yb3+-doped YA1O3 perovskite crystals (Yb∶YAP) with Yb3+-doped Y3Al5O12 garnet crystals (Yb∶YAG) for laser application[J]. Josa B, 2008, 25(5): 884-896.

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    TAN Huiyu, WANG Rui, ZHANG Peixiong, YIN Hao, LI Zhen, CHEN Zhenqiang. Growth and Properties of Gd3+/Yb3+ Co-Doped Yttrium Aluminate Crystals[J]. Journal of Synthetic Crystals, 2021, 50(11): 2013

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    Paper Information

    Category:

    Received: Aug. 9, 2021

    Accepted: --

    Published Online: Feb. 14, 2022

    The Author Email: Huiyu TAN (1224541614@qq.com)

    DOI:

    CSTR:32186.14.

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