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Optimized magneto-optical isolator designs inspired by seedlayer-free terbium iron garnets with opposite chirality

机译:优化的磁光隔离器设计灵感来自具有相反手性的无种子层的铽铁石榴石

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摘要

Simulations demonstrate that undoped yttrium iron garnet (YIG) seedlayers cause reduced Faraday rotation in silicon-on-insulator (SOI) waveguides with Ce-doped YIG claddings. Undoped seedlayers are required for the crystallization of the magneto-optical Ce:YIG claddings, but they diminish the interaction of the Ce:YIG with the guided modes. Therefore new magneto-optical garnets, terbium iron garnet (TIG) and bismuth-doped TIG (Bi:TIG), are introduced that can be integrated directly on Si and quartz substrates without seedlayers. The Faraday rotations of TIG and Bi:TIG films at 1550nm were measured to be +500 and -500°/cm, respectively. Simulations show that these new garnets have the potential to significantly mitigate the negative impact of the seedlayers under Ce:YIG claddings. The successful growth of TIG and Bi:TIG on low-index fused quartz inspired novel garnet-core waveguide isolator designs, simulated using finite difference time domain (FDTD) methods. These designs use alternating segments of positive and negative Faraday rotation for push-pull quasi phase matching in order to overcome birefringence in waveguides with rectangular cross-sections.
机译:仿真表明,未掺杂钇铁石榴石(YIG)籽晶层会导致掺杂Ce的YIG包层的绝缘体上硅(SOI)波导中的法拉第旋转降低。磁光Ce:YIG包层的结晶需要未掺杂的籽晶层,但它们会减少Ce:YIG与引导模的相互作用。因此,引入了新的磁光石榴石,ter铁石榴石(TIG)和铋掺杂的TIG(Bi:TIG),它们可以直接集成在Si和石英衬底上而无需籽晶层。 TIG和Bi:TIG薄膜在1550nm处的法拉第旋转经测量分别为+500和-500°/ cm。仿真表明,这些新的石榴石有可能显着减轻Ce:YIG包层下种子层的负面影响。 TIG和Bi:TIG在低折射率熔融石英上的成功发展激发了新颖的石榴石芯波导隔离器设计,并使用时差有限域(FDTD)方法进行了仿真。这些设计使用正法拉第正旋转和负法拉第旋转的交替部分进行推挽准相位匹配,以克服具有矩形截面的波导中的双折射。

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