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The effect of terbium on the optical dispersion and magneto-optical properties of YIG crystals grown by flux-Bridgman method

机译:铽对通量-布里奇曼法生长的YIG晶体光色散及磁光性能的影响

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R3Fe5O12 (RIG) crystals are the key elements for magneto-optical isolators in the near-infrared (NIR) to mid-infrared (MIR) region, with ever-growing demands for integrated photonics. However, the growth of high-quality single crystals is still a big obstacle. The effect of rare earths on the optical and magneto-optical prop-erties of YIG crystals is not well understood. Herein, a series of high quality Tb3+ doped yttrium iron garnet (Y3-xTbxFe5O12, x = 0, 0.5, 1.0, 1.5, 3.0) crystals have been successfully obtained by the flux-Bridgman method, with sizes over 20 mm. Tb:YIG crystals reserve typical cubic garnet structure, with spatial group of Ia3d. The lattice constants increase from 12.377 angstrom (YIG) to 12.448 angstrom (TbIG). The refractive index decreases from 2.38 (500 nm) to 2.11 (2500 nm) for YIG crystal, and it reduces from 2.51 (500 nm) to 2.17 (2500 nm) for TbIG crystal. The optical dispersion of the refractive indices was well fitted by the Wemple and DiDomenico (WDD) and the Sellmeier models, respectively. Relatively lower values of the absorption coefficient of the Tb:YIG crystals confirm the high transparency in the NIR region. The characteristic absorption of Tb3+ was observed from 1700 nm to 2500 nm. The specific Faraday rotation angles (theta F) of both YIG and TbIG decrease with increasing wavelength, reaching 235.4 and 366.5 degrees /cm at 1300 nm, respectively. Compared with that of YIG, theta F of TbIG crystal shows stronger wavelength dependence. This work provides more insight into the role of rare earths on the optical and magneto-optical behavior of RIG crystals, which will accelerate the design of high-performance magneto-optical crystals for application in NIR-MIR wavelength.
机译:R3Fe5O12 (RIG) 晶体是近红外 (NIR) 至中红外 (MIR) 区域磁光隔离器的关键元件,对集成光子学的需求不断增长。然而,高质量单晶的生长仍然是一个很大的障碍。稀土对YIG晶体的光学和磁光特性的影响尚不清楚。本文采用通量-布里奇曼法成功制备了一系列尺寸大于20 mm的高质量Tb3+掺杂钇铁石榴石(Y3-xTbxFe5O12, x = 0, 0.5, 1.0, 1.5, 3.0)晶体。Tb:YIG晶体保留了典型的立方石榴石结构,空间群为Ia3d。晶格常数从 12.377 埃 (YIG) 增加到 12.448 埃 (TbIG)。YIG晶体的折射率从2.38(500nm)降低到2.11(2500nm),TbIG晶体的折射率从2.51(500nm)降低到2.17(2500nm)。折射率的光学色散分别由Wemple和DiDomenico(WDD)和Sellmeier模型很好地拟合。Tb:YIG晶体的吸收系数值相对较低,证实了近红外区域的高透明度。在 1700 nm 至 2500 nm 范围内观察到 Tb3+ 的特征吸收。YIG和TbIG的法拉第比旋转角(θF)随波长的增加而减小,在1300 nm处分别达到235.4和366.5 degrees /cm。与YIG相比,TbIG晶体的θ F表现出更强的波长依赖性。这项工作为稀土对RIG晶体的光学和磁光行为提供了更多的见解,这将加速高性能磁光晶体在NIR-MIR波长中的应用。

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