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Microring-Based Optical Isolator and Circulator with Integrated Electromagnet for Silicon Photonics

机译:基于微环的集成电磁体的光隔离器和循环器,用于硅光子学

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摘要

In this study, we present optical isolators and circulators fabricated by bonding cerium-substituted yttrium iron garnet (Ce:YIG) on silicon microring resonators. A novel integrated electromagnet is fabricated by depositing a metal micro-strip on the bonded chip. We experimentally prove that it can be efficiently used to control the magnetic field needed to induce the nonreciprocal phase shift effect in the Ce:YIG. The fabricated devices exhibit extremely small footprint (<70 μm) and can be packaged, eliminating the need of a large size permanent magnet. A large optical isolation of 32 dB and 11 dB is measured for the isolator and the circulator, respectively. Moreover, a two microring solution is also investigated to provide larger bandwidth and higher isolation. The proposed approach represents a promising solution for large-scale integration of nonreciprocal components in silicon photonics.
机译:在这项研究中,我们介绍了通过在硅微环谐振器上结合铈取代的钇铁石榴石(Ce:YIG)制造的光隔离器和环行器。通过在键合芯片上沉积金属微带来制造新颖的集成电磁铁。我们通过实验证明,它可以有效地用于控制在Ce:YIG中引起不可逆相移效应所需的磁场。所制造的设备具有极小的占地面积(<70μm),并且可以封装,从而无需大尺寸的永磁体。对隔离器和环行器分别测得32 dB和11 dB的大光隔离。此外,还研究了两个微环解决方案以提供更大的带宽和更高的隔离度。所提出的方法代表了在硅光子学中不可逆组件大规模集成的有前途的解决方案。

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