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Passively Biased Resonantly Enhanced Silicon Photonics Modulator with High Optical Bandwidth

机译:具有高光学带宽的无源偏置谐振增强型硅光子调制器

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Ring resonator modulators reach high modulation efficiencies, are very compact and can be electrically driven as lumped elements. However, their limited optical bandwidth requires temperature stabilization, limiting their power efficiency. A novel ring assisted Mach-Zehnder modulator (MZM) aggressively reduces power consumption. Moreover, an integration scheme passively sets the 3 dB point during attachment of the input fiber relative to a multimode grating coupler used as the first splitter element of the interferometer. Straight phase shifters are replaced by arrays of highly overcoupled resonators maintaining a sufficiently high finesse and a substantial resonant enhancement while minimizing the excess losses at the resonator to waveguide junctions. A large resonance bandwidth compatible with thermal operation over 50 ℃ without dynamic compensation is obtained together with a factor larger than four in the reduction of power consumption relative to a conventional MZM.
机译:环形谐振器调制器具有很高的调制效率,非常紧凑,可以作为集总元件进行电驱动。但是,其有限的光带宽需要温度稳定,从而限制了其功率效率。新型的环形辅助马赫曾德尔调制器(MZM)积极降低了功耗。此外,相对于用作干涉仪的第一分离器元件的多模光栅耦合器,集成方案在输入光纤的连接过程中被动地设置了3 dB点。直相移器由高度过度耦合的谐振器阵列代替,该谐振器阵列保持足够高的精细度和显着的谐振增强,同时使谐振器与波导结之间的额外损耗最小化。与传统的MZM相比,可以获得大的谐振带宽,该带宽与50℃以上的热运行兼容,并且没有动态补偿,并且在降低功耗方面的系数大于四。

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