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Electronic-photonic integrated circuits on the CMOS platform

机译:CMOS平台上的电子-光子集成电路

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The optical components industry stands at the threshold of a major expansion that will restructure its business processes and sustain its profitability for the next three decades. This growth will establish a cost effective platform for the partitioning of electronic and photonic functionality to extend the processing power of integrated circuits. BAE Systems, Lucent Technologies, Massachusetts Institute of Technology, and Applied Wave Research are participating in a high payoff research and development program for the Microsystems Technology Office (MTO) of DARPA. The goal of the program is the development of technologies and design tools necessary to fabricate an application-specific, electronic-photonic integrated circuit (AS-EPIC). As part of the development of this demonstration platform we are exploring selected functions normally associated with the front end of mixed signal receivers such as modulation, detection, and filtering. The chip will be fabricated in the BAE Systems CMOS foundry and at MIT's Microphotonics Center. We will present the latest results on the performance of multi-layer deposited High Index Contrast Waveguides, CMOS compatible modulators and detectors, and optical filter slices. These advances will be discussed in the context of the Communications Technology Roadmap that was recently released by the MIT Microphotonics Center Industry Consortium.
机译:光学元件行业正处于大规模扩张的门槛,它将在接下来的三十年中重组其业务流程并维持其盈利能力。这种增长将为电子和光子功能的划分建立一个经济高效的平台,以扩展集成电路的处理能力。 BAE系统公司,朗讯技术公司,麻省理工学院和Applied Wave Research公司正在参与DARPA微系统技术办公室(MTO)的高收益研究与开发计划。该计划的目标是开发制造专用电子光子集成电路(AS-EPIC)所需的技术和设计工具。作为该演示平台开发的一部分,我们正在探索通常与混合信号接收器的前端相关联的选定功能,例如调制,检测和滤波。该芯片将在BAE Systems的CMOS代工厂和麻省理工学院的微光子学中心制造。我们将展示多层沉积高折射率对比度波导,CMOS兼容调制器和检测器以及滤光片的最新性能。麻省理工学院微光子学中心产业联盟最近发布的《通信技术路线图》将对这些进展进行讨论。

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