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Silicon-based photonic network devices and materials

机译:硅基光子网络设备和材料

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摘要

Silicon photonics technology is expected to be key to high-performance, low-power photonic networks. It is also expected that using Si photonics technology will make it possible to integrate photonic key components, such as optical waveguides, optical switches, polarization rotators, light emitters, and optical gain on Si chip C-MOS devices. We propose approaches to fabricating these key components on Si wafers. That is, we introduce some key technologies; (a) all-optical switching in a Si nanowire waveguide, (b) a Si waveguide polarization rotator, (c) material synthesis and waveguide formation of rare earth-doped SiOx thin-films for Si-based light emitters, and (d) a technique for fabricating nano-structured III-V semiconductors, such as Sb-based quantum dot structures, on Si wafers. We also propose a concept for applying Si photonics, I.e., a way to use Si photonics in information and communications technology (ICT).
机译:硅光子技术有望成为高性能,低功耗光子网络的关键。还期望使用Si光子学技术将有可能在Si芯片C-MOS器件上集成光子关键组件,例如光波导,光开关,偏振旋转器,光发射器和光增益。我们提出了在硅晶片上制造这些关键组件的方法。也就是说,我们介绍了一些关键技术。 (a)硅纳米线波导中的全光切换;(b)硅波导偏振旋转器;(c)用于硅基发光体的稀土掺杂SiOx薄膜的材料合成和波导形成;以及(d)一种在Si晶片上制造纳米结构III-V半导体(例如基于Sb的量子点结构)的技术。我们还提出了应用Si光子学的概念,即在信息和通信技术(ICT)中使用Si光子学的方法。

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