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One-Dimensional Photonic Crystal Slot Waveguide for Silicon-Organic Hybrid Electro-Optic Modulators

机译:用于硅有机混合电光调制器的一维光子晶体缝隙波导

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摘要

In an on-chip silicon-organic hybrid electro-optic (EO) modulator, the mode overlap with EO materials, in-device effective 33, and propagation loss are among the most critical factors that determine the performance of the modulator. Various waveguide structures have been proposed to optimize these factors, yet there is a lack of comprehensive consideration on all of them. In this Letter, a one-dimensional (1D) photonic crystal (PC) slot waveguide structure is proposed that takes all these factors into consideration. The proposed structure takes advantage of the strong mode confinement within a low-index region in a conventional slot waveguide and the slow-light enhancement from the 1D PC structure. Its simple geometry makes it robust to resist fabrication imperfections and helps reduce the propagation loss. Using it as a phase shifter in a Mach–Zehnder interferometer structure, an integrated silicon-organic hybrid EO modulator was experimentally demonstrated. The observed effective EO coefficient is as high as 490 pm/V. The measured half-wave voltage and length product is less than 1 V · cm and can be further improved. A potential bandwidth of 61 GHz can be achieved and further improved by tailoring the doping profile. The proposed structure offers a competitive novel phase-shifter design, which is simple, highly efficient, and with low optical loss, for on-chip silicon-organic hybrid EO modulators.
机译:在片上硅有机混合电光(EO)调制器中,与EO材料的模式重叠,器件内有效33和传播损耗是决定调制器性能的最关键因素。已经提出了各种波导结构来优化这些因素,但是对它们全部缺乏综合考虑。在这封信中,提出了考虑所有这些因素的一维(1D)光子晶体(PC)缝隙波导结构。所提出的结构利用了传统缝隙波导中低折射率区域内的强模式限制以及1D PC结构带来的缓慢光增强的优势。其简单的几何形状使其能够抵抗制造缺陷,并有助于减少传播损耗。将其用作Mach-Zehnder干涉仪结构中的移相器,通过实验证明了集成的有机硅有机EO调制器。观察到的有效EO系数高达490 pm / V。测得的半波电压和长度乘积小于1 V·cm,可以进一步改善。通过调整掺杂分布,可以实现并进一步提高61 GHz的潜在带宽。所提出的结构为片上硅-有机混合EO调制器提供了具有竞争力的新颖移相器设计,该设计简单,高效且具有低光学损耗。

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