首页> 外文会议>Conference on Silicon Photonics; 20080121-24; San Jose,CA(US) >Optical Modulation Techniques for Analog Signal Processing and CMOS Compatible Electrooptic Modulation
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Optical Modulation Techniques for Analog Signal Processing and CMOS Compatible Electrooptic Modulation

机译:用于模拟信号处理和CMOS兼容电光调制的光调制技术

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摘要

Integrating electronic and photonic functions onto a single silicon-based chip using techniques compatible with mass-production CMOS electronics will enable new design paradigms for existing system architectures and open new opportunities for electro-optic applications with the potential to dramatically change the management, cost, footprint, weight, and power consumption of today's communication systems. While broadband analog system applications represent a smaller volume market than that for digital data transmission, there are significant deployments of analog electro-optic systems for commercial and military applications. Broadband linear modulation is a critical building block in optical analog signal processing and also could have significant applications in digital communication systems. Recently, broadband electro-optic modulators on a silicon platform have been demonstrated based on the plasma dispersion effect. The use of the plasma dispersion effect within a CMOS compatible waveguide creates new challenges and opportunities for analog signal processing since the index and propagation loss change within the waveguide during modulation. We will review the current status of silicon-based electrooptic modulators and also linearization techniques for optical modulation.
机译:使用与批量生产CMOS电子产品兼容的技术将电子和光子功能集成到单个硅芯片上,将为现有系统架构提供新的设计范例,并为电光应用带来新的机遇,并有可能显着改变管理,成本,当今通信系统的占地面积,重量和功耗。尽管宽带模拟系统应用的市场规模小于数字数据传输的市场规模,但仍有大量用于商业和军事应用的模拟电光系统部署。宽带线性调制是光模拟信号处理中的关键组成部分,并且在数字通信系统中也可能具有重要的应用。近来,已经基于等离子体分散效应证明了在硅平台上的宽带电光调制器。由于在调制期间波导内的折射率和传播损耗会发生变化,因此在CMOS兼容波导内使用等离子体弥散效应会给模拟信号处理带来新的挑战和机遇。我们将回顾基于硅的电光调制器的现状以及光调制的线性化技术。

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