• Journal of Synthetic Crystals
  • Vol. 49, Issue 2, 346 (2020)
ZHANG Haotian1,2, DOU Renqin1, ZHANG Qingli1,*, LIU Wenpeng1..., SUN Guihua1 and LUO Jianqiao1|Show fewer author(s)
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  • 2[in Chinese]
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    DOI: Cite this Article
    ZHANG Haotian, DOU Renqin, ZHANG Qingli, LIU Wenpeng, SUN Guihua, LUO Jianqiao. Research Progress and Applications of Magneto-optical Crystal[J]. Journal of Synthetic Crystals, 2020, 49(2): 346 Copy Citation Text show less
    References

    [6] Mironov E A, Zheleznov D S, Starobor A V, et al. Large-aperture Faraday isolator based on a terbium gallium garnet crystal[J].Optics Letters,2015,40(12):2794-2797.

         Mironov E A, Zheleznov D S, Starobor A V, et al. Large-aperture Faraday isolator based on a terbium gallium garnet crystal[J].Optics Letters,2015,40(12):2794-2797.

    [7] Lorenz Von Grafenstein, Martin Bock, Dennis Ueberschaer, et al. 5 μm few-cycle pulses with multi-gigawatt peak power at a 1kHz repetition rate[J].Optics Letters,2017,42(19):3796-3799.

         Lorenz Von Grafenstein, Martin Bock, Dennis Ueberschaer, et al. 5 μm few-cycle pulses with multi-gigawatt peak power at a 1kHz repetition rate[J].Optics Letters,2017,42(19):3796-3799.

    [8] Dzelzainis T, Nersisyan G, Riley D, et al. The TARANIS laser: A multi-Terawatt system for laser-plasma investigations[J]. Laser and Particle Beams,2010,28(3):451-651.

         Dzelzainis T, Nersisyan G, Riley D, et al. The TARANIS laser: A multi-Terawatt system for laser-plasma investigations[J]. Laser and Particle Beams,2010,28(3):451-651.

    [15] Majid N A, Abu B S, Muhammad A K, et al. Structural and magnetic properties of yttrium iron garnet (YIG) and yttrium aluminum iron garnet (YAIG) nanoferrites prepared by microemulsion method[J].Journal of Magnetism and Magnetic Materials,2016,401:425-431.

         Majid N A, Abu B S, Muhammad A K, et al. Structural and magnetic properties of yttrium iron garnet (YIG) and yttrium aluminum iron garnet (YAIG) nanoferrites prepared by microemulsion method[J].Journal of Magnetism and Magnetic Materials,2016,401:425-431.

    [16] Mikio G, Takenori S, Takashi F. Growth of terbium aluminum garnet (Tb3Al5O12; TAG) single crystals by the hybrid laser floating zone machine[J].Journal of Crystal Growth,2004,267(1-2):188-193.

         Mikio G, Takenori S, Takashi F. Growth of terbium aluminum garnet (Tb3Al5O12; TAG) single crystals by the hybrid laser floating zone machine[J].Journal of Crystal Growth,2004,267(1-2):188-193.

    [17] Mikio G, Takenori S, Takashi F. Growth mechanism of incongruently melting terbium aluminum garnet (Tb3Al5O12; TAG) single crystals by laser FZ method[J].Journal of Crystal Growth,2004,275(1-2):e663-e667.

         Mikio G, Takenori S, Takashi F. Growth mechanism of incongruently melting terbium aluminum garnet (Tb3Al5O12; TAG) single crystals by laser FZ method[J].Journal of Crystal Growth,2004,275(1-2):e663-e667.

    [20] Ilya S, Oleg P. Faraday isolator based on a TSAG single crystal with compensation of thermally induced depolarization inside magnetic field[J].Optical Materials,2014,42:293-297.

         Ilya S, Oleg P. Faraday isolator based on a TSAG single crystal with compensation of thermally induced depolarization inside magnetic field[J].Optical Materials,2014,42:293-297.

    [25] Chang F F, Yuan S J, Wang Y B, et al. Growth and morphology of ErFeO3 single crystal[J].Journal of Crystal Growth,2011,318(1):932-935.

         Chang F F, Yuan S J, Wang Y B, et al. Growth and morphology of ErFeO3 single crystal[J].Journal of Crystal Growth,2011,318(1):932-935.

    [26] Wang Y B, Cao S X, Shao M J, et al. Growth rate dependence of the NdFeO3 single crystal grown by float-zone technique[J].Journal of Crystal Growth,318(1):927-931.

         Wang Y B, Cao S X, Shao M J, et al. Growth rate dependence of the NdFeO3 single crystal grown by float-zone technique[J].Journal of Crystal Growth,318(1):927-931.

    [27] Wu A H, Shen H, Xu J, et al. Crystal growth and magnetic property of YFeO3 crystal[J].Bulletin of Materials Science,2012,35(2):259-263.

         Wu A H, Shen H, Xu J, et al. Crystal growth and magnetic property of YFeO3 crystal[J].Bulletin of Materials Science,2012,35(2):259-263.

    [28] Zhao X Y, Man P W, Xie T, et al. Crystal growth and characterization of the rare-earth orthoferrite SmTbFeO single crystal[J].Journal of Inorganic Materials,2016,34(9):1004-1008.

         Zhao X Y, Man P W, Xie T, et al. Crystal growth and characterization of the rare-earth orthoferrite SmTbFeO single crystal[J].Journal of Inorganic Materials,2016,34(9):1004-1008.

    [29] Guo F Y, Zhang R R, Cui Z H, et al. Growth and FR characheristics of Li2Tb4(MoO4)7 crystal[J].Optica Materials,2012,35(2):227-230.

         Guo F Y, Zhang R R, Cui Z H, et al. Growth and FR characheristics of Li2Tb4(MoO4)7 crystal[J].Optica Materials,2012,35(2):227-230.

    [31] Siqueira K P F, Soares J C, Granad E, et al. Synchrontron X-ray diffraction and Raman spectroscopy of Ln3NbO7(Ln=La, Pr, Nd, Sm-Lu) ceramics obtained by molten-salt synthesis[J].Journal of Solid State Chemistry,2014(209):63-68.

         Siqueira K P F, Soares J C, Granad E, et al. Synchrontron X-ray diffraction and Raman spectroscopy of Ln3NbO7(Ln=La, Pr, Nd, Sm-Lu) ceramics obtained by molten-salt synthesis[J].Journal of Solid State Chemistry,2014(209):63-68.

    [33] Zhuang N F, Chen W B, Shi L J, et al. A new technique to grow incongruent melting Ga∶YIG crystals: the edge-defined film-fed growth method[J].Journal of Applied Crystallography,2013,46:476-751.

         Zhuang N F, Chen W B, Shi L J, et al. A new technique to grow incongruent melting Ga∶YIG crystals: the edge-defined film-fed growth method[J].Journal of Applied Crystallography,2013,46:476-751.

    [34] Lin H, Zhou S M, Teng H. Synthesis of Tb3Al5O12(TAG) transparent ceramics for potential magneto-optical applications[J].Optical Materials,2011,33(11):1833-1836.

         Lin H, Zhou S M, Teng H. Synthesis of Tb3Al5O12(TAG) transparent ceramics for potential magneto-optical applications[J].Optical Materials,2011,33(11):1833-1836.

    [35] Peiwen M, Fengkai M, Tao X, et al. Magneto-optical property of terbium-lutetium-aluminum garnet crystals[J].Optical Materials,2017,66:207-210.

         Peiwen M, Fengkai M, Tao X, et al. Magneto-optical property of terbium-lutetium-aluminum garnet crystals[J].Optical Materials,2017,66:207-210.

    [36] Ilya L S, Ryo Y, Alwksey V S, et al. Thermo-optical and magneto-optical characteristics of terbium scandium garnet crystals[J].Journal of Quantum Electronics,2015,51(7):1-7.

         Ilya L S, Ryo Y, Alwksey V S, et al. Thermo-optical and magneto-optical characteristics of terbium scandium garnet crystals[J].Journal of Quantum Electronics,2015,51(7):1-7.

    [37] Shoujun D, Qingli Z, Wenpeng L, et al. Crystal growth, defects, mechanical, thermal and optical properties of TbScAlO magneto-optical crystal[J].Journal of Crystal Growth,2018,483:110-114.

         Shoujun D, Qingli Z, Wenpeng L, et al. Crystal growth, defects, mechanical, thermal and optical properties of TbScAlO magneto-optical crystal[J].Journal of Crystal Growth,2018,483:110-114.

    [38] Jin W Z, Ding J X, Guo L, et al. Growth and research of Tb3Ga5O12 magneto-optical crystal[J].Journal of Crystal Growth,2018,484: 17-20.

         Jin W Z, Ding J X, Guo L, et al. Growth and research of Tb3Ga5O12 magneto-optical crystal[J].Journal of Crystal Growth,2018,484: 17-20.

    [41] Kiyoshi S, Takayuki K, Elias C, et al. Growth of {Tb3}[Sc2-xLux](Al3)O12 single crystals for visible-infrared optical isolators [J].Crystal Growth & Design,2010,10:3466-3470.

         Kiyoshi S, Takayuki K, Elias C, et al. Growth of {Tb3}[Sc2-xLux](Al3)O12 single crystals for visible-infrared optical isolators [J].Crystal Growth & Design,2010,10:3466-3470.

    [43] Ilya S, Oleg P. Faraday isolator based on a TSAG single crystal with compensation of thermally induced depolarization inside magnetic field[J].Optical Materials,2015,42:293-297.

         Ilya S, Oleg P. Faraday isolator based on a TSAG single crystal with compensation of thermally induced depolarization inside magnetic field[J].Optical Materials,2015,42:293-297.

    [44] Aleksey Starobor, Ryo Yasyhara, Ilya Snetkov, et al. TSAG-based cryogenic Faraday isolator[J].Optical Materials,2015,47:112-117.

         Aleksey Starobor, Ryo Yasyhara, Ilya Snetkov, et al. TSAG-based cryogenic Faraday isolator[J].Optical Materials,2015,47:112-117.

    [45] Ondrej Slezak, Ryo Yasuhara, Antonio Lucianetti, et al. Wavelength dependence of magneto-optic properties of terbium gallium garnet ceramics[J].Optical Express,2015,23(10):13641-13647.

         Ondrej Slezak, Ryo Yasuhara, Antonio Lucianetti, et al. Wavelength dependence of magneto-optic properties of terbium gallium garnet ceramics[J].Optical Express,2015,23(10):13641-13647.

    [46] Ryo Yasuhara, Shigeki Tokita, Junji Kawanaka, et al. Measurement of Magnet-optical property and thermal conductivity on TGG ceramic for faraday material of high-peak and high average power laser[J].Laser Original,2015,35(12):806-810.

         Ryo Yasuhara, Shigeki Tokita, Junji Kawanaka, et al. Measurement of Magnet-optical property and thermal conductivity on TGG ceramic for faraday material of high-peak and high average power laser[J].Laser Original,2015,35(12):806-810.

    [47] Ryo Y, Hoshiteru N, Takagimi Y. Temperature dependence of thermo-optic effects of single-crystal and ceramic TGG[J].Optics Express,2013,21(25):31443-31452.

         Ryo Y, Hoshiteru N, Takagimi Y. Temperature dependence of thermo-optic effects of single-crystal and ceramic TGG[J].Optics Express,2013,21(25):31443-31452.

    [48] Dou R Q, Zhang H T, Zhang Q L, et al. Growth and properties of TSAG and TSLAG magneto-optical crystals with large size[J].Optical Materials,2019,96:109272.

         Dou R Q, Zhang H T, Zhang Q L, et al. Growth and properties of TSAG and TSLAG magneto-optical crystals with large size[J].Optical Materials,2019,96:109272.

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    ZHANG Haotian, DOU Renqin, ZHANG Qingli, LIU Wenpeng, SUN Guihua, LUO Jianqiao. Research Progress and Applications of Magneto-optical Crystal[J]. Journal of Synthetic Crystals, 2020, 49(2): 346
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