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Optical isolator for TE polarized light realized by adhesive bonding of Ce:YIG on silicon-on-insulator waveguide circuits

机译:用于TE偏振光的光隔离器通过在绝缘体上硅波导电路上粘接Ce:YIG实现

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摘要

An optical isolator for transverse electric (TE) polarized light is demonstrated by adhesive bonding of a ferrimagnetic garnet die on top of a 380 nm thick silicon waveguide circuit. Polarization rotators are implemented in the arms of a nonreciprocal Mach-Zehnder interferometer to rotate the polarization to transverse magnetic in the nonreciprocal phase shifter regions. Calculation of the nonreciprocal phase shift (NRPS) as a function of bonding layer thickness experienced by the TM mode in the interferometer arms is presented, together with the simulation of the robustness of the polarization rotator. Experimentally, 32 dB isolation is measured at 1540.5 nm wavelength using a magnetic field transverse to the light propagation directions. This paves the way to the cointegration of laser diodes and optical isolators on a silicon photonics platform.
机译:通过在380 nm厚的硅波导电路顶部粘合铁磁性石榴石裸片来演示用于横向电(TE)偏振光的光隔离器。极化旋转器安装在不可逆的Mach-Zehnder干涉仪的臂中,以在不可逆的移相器区域中将极化旋转为横向磁场。提出了不可逆相移(NRPS)与干涉仪臂中TM模式所经历的粘结层厚度的函数关系,以及偏振旋转器的鲁棒性仿真。实验上,使用横向于光传播方向的磁场在1540.5 nm波长处测量32 dB隔离度。这为在硅光子平台上实现激光二极管和光学隔离器的整合铺平了道路。

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