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通过混合硅/二氧化硅/硅微盘中的载流子积累实现的紧凑型15 Gb/s电光调制器。

Compact, 15 Gb/s electro-optic modulator through carrier accumulation in a hybrid Si/SiO(2)/Si microdisk.

作者信息

Sodagar Majid, Hosseinnia Amir H, Isautier Pierre, Moradinejad Hesam, Ralph Stephen, Eftekhar Ali A, Adibi Ali

出版信息

Opt Express. 2015 Nov 2;23(22):28306-15. doi: 10.1364/OE.23.028306.

Abstract

High-speed electro-optic modulators are among the key elements in any optical interconnect system. In this work we design and demonstrate an electro-optic modulator based on carrier accumulation on a multilayer integrated photonic platform comprising a stack of high quality Si, SiO(2), and Si layers. The device consists of a 3-μm radius microdisk with an embedded capacitor. Characterization results reveal an operation bandwidth of exceeding 10 GHz. The device is capable of transmitting 15 Gb/s with the on/off keying format in a single polarization. The proposed structure can be self-trimmed by up to 1 nm in wavelength by applying a dc bias voltage without any power consumption. This feature eliminates the need for power-hungry thermal-based compensation methods to address the resonance wavelength mismatch due to fabrication imperfections.

摘要

高速电光调制器是任何光互连系统中的关键元件之一。在这项工作中,我们设计并展示了一种基于多层集成光子平台上载流子积累的电光调制器,该平台由高质量的硅、二氧化硅和硅层堆叠而成。该器件由一个半径为3μm的带有嵌入式电容器的微盘组成。表征结果显示其工作带宽超过10GHz。该器件能够在单偏振下以开关键控格式传输15Gb/s的数据。通过施加直流偏置电压,所提出的结构可以在不消耗任何功率的情况下将波长自调整多达1nm。这一特性消除了对高功耗的基于热的补偿方法的需求,以解决由于制造缺陷导致的共振波长失配问题。

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