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Silicon Optical Modulator Using a Low-Loss Phase Shifter Based on a Multimode Interference Waveguide

机译:基于多模干涉波导的低损耗移相器硅光调制器

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摘要

We have developed a novel phase modulator, based on fin-type electrodes placed at self-imaging positions of a silicon multimode interference (MMI) waveguide, which allows reduced scattering losses and relaxes the fabrication tolerance. The measured propagation losses and spectral bandwidth are 0.7 dB and 33 nm, respectively, on a 987 μm-long phase shifter. Owing to the self-imaging effect in the MMI waveguide, the wave-front expansion to the electrode was counteracted, and therefore, the scattering loss caused by electrode fins was successfully mitigated. As a proof-of-concept for the MMI-based phase modulator applications, we performed optical modulation based on Mach–Zehnder interferometers (MZIs). The π shift current of the modulator was 1.5 mA.
机译:我们已经开发了一种新型的相位调制器,它基于位于硅多模干涉(MMI)波导的自成像位置的鳍片型电极,从而可以减少散射损耗并放宽制造公差。在987μm长的移相器上,测得的传播损耗和频谱带宽分别为0.7 dB和33 nm。由于MMI波导中的自成像效应,抵消了向电极的波前扩展,因此,成功减轻了由电极鳍引起的散射损耗。作为基于MMI的相位调制器应用的概念验证,我们基于Mach–Zehnder干涉仪(MZI)进行了光调制。调制器的π移位电流为1.5 mA。

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