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1.54-μm TM-mode waveguide optical isolator based on the nonreciprocal-loss phenomenon: device design to reduce insertion loss

机译:基于不可逆损耗现象的1.54μmTM模式波导光隔离器:减少插入损耗的器件设计

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摘要

We developed a 1.5-μm band TM-mode waveguide optical isolator that makes use of the nonreciprocalloss phenomenon. The device was designed to operate in a single mode and consists of an InGaAlAs/InP ridge-waveguide optical amplifier covered with a ferromagnetic MnAs layer. The combination of the optical waveguide and the magnetized ferromagnetic metal layer produces a magneto-optic effect called the nonreciprocal-loss phenomenon—a phenomenon in which the propagation loss of light is larger in backward propagation than it is in forward propagation. We propose the guiding design principle for the structure of the device and determine the optimized structure with the aid of electromagnetic simulation using the finite-difference method. On the basis of the results, we fabricated a prototype device and evaluated its operation. The device showed an isolation ratio of 7.2 dB/mm at a wavelength from 1.53 to 1.55 μm. Our waveguide isolator can be monolithically integrated with other waveguide-based optical devices on an InP substrate.
机译:我们开发了一种利用不可逆损耗现象的1.5μm波段TM模式波导光隔离器。该器件设计为以单模模式运行,由覆盖有铁磁MnAs层的InGaAlAs / InP脊波导光学放大器组成。光波导和磁化的铁磁金属层的组合会产生一种磁光效应,称为不可逆损耗现象,该现象是光的传播损耗在向后传播中大于向前传播。我们提出了器件结构的指导性设计原则,并借助有限差分法借助电磁仿真确定了优化的结构。根据结果​​,我们制造了原型设备并评估了其操作。该器件在1.53至1.55μm的波长下显示出7.2 dB / mm的隔离率。我们的波导隔离器可以与InP衬底上的其他基于波导的光学器件单片集成。

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