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Passively Biased Resonantly Enhanced Silicon Photonics Modulator with High Optical Bandwidth

机译:具有高光带宽的被动偏置的谐振增强硅光子模型调制器

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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 °C 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:环形谐振器调节器达到高调制效率,非常紧凑,可以电驱动为集块元件。然而,它们有限的光带宽需要温度稳定,限制其功率效率。一种新型环形辅助Mach-Zehnder调制器(MZM)积极降低功耗。此外,集成方案在输入光纤相对于使用用作干涉仪的第一分离元件的多模光栅耦合器期间被动地设置3db点。直相移器由高度过耦的谐振器阵列取代,其保持足够高的技巧和大量共振增强,同时最小化谐振器对波导连接处的过度损耗。在没有动态补偿的情况下,在50°C上兼容的大于50°C超过50°C的大的共振带宽与相对于传统MZM的功耗降低,比四个大于四个。

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