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微米级硅电光调制器。

Micrometre-scale silicon electro-optic modulator.

作者信息

Xu Qianfan, Schmidt Bradley, Pradhan Sameer, Lipson Michal

机构信息

School of Electrical and Computer Engineering, Cornell University, 411 Phillips Hall, Ithaca, New York 14853, USA.

出版信息

Nature. 2005 May 19;435(7040):325-7. doi: 10.1038/nature03569.

Abstract

Metal interconnections are expected to become the limiting factor for the performance of electronic systems as transistors continue to shrink in size. Replacing them by optical interconnections, at different levels ranging from rack-to-rack down to chip-to-chip and intra-chip interconnections, could provide the low power dissipation, low latencies and high bandwidths that are needed. The implementation of optical interconnections relies on the development of micro-optical devices that are integrated with the microelectronics on chips. Recent demonstrations of silicon low-loss waveguides, light emitters, amplifiers and lasers approach this goal, but a small silicon electro-optic modulator with a size small enough for chip-scale integration has not yet been demonstrated. Here we experimentally demonstrate a high-speed electro-optical modulator in compact silicon structures. The modulator is based on a resonant light-confining structure that enhances the sensitivity of light to small changes in refractive index of the silicon and also enables high-speed operation. The modulator is 12 micrometres in diameter, three orders of magnitude smaller than previously demonstrated. Electro-optic modulators are one of the most critical components in optoelectronic integration, and decreasing their size may enable novel chip architectures.

摘要

随着晶体管尺寸不断缩小,金属互连预计将成为电子系统性能的限制因素。从机架到机架、芯片到芯片以及芯片内互连等不同层面,用光学互连取代金属互连,可以提供所需的低功耗、低延迟和高带宽。光学互连的实现依赖于与芯片上的微电子集成的微光学器件的发展。最近硅基低损耗波导、发光器、放大器和激光器的演示接近了这一目标,但尚未展示出尺寸小到足以用于芯片级集成的小型硅电光调制器。在此,我们通过实验证明了一种紧凑型硅结构中的高速电光调制器。该调制器基于一种谐振光限制结构,这种结构提高了光对硅折射率微小变化的敏感度,还实现了高速运行。该调制器直径为12微米,比之前展示的小三个数量级。电光调制器是光电子集成中最关键的组件之一,减小其尺寸可能会催生新型芯片架构。

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