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首页> 外文期刊>IEEE Transactions on Electron Devices >Fundamentals of Silicon Material Properties for Successful Exploitation of Strain Engineering in Modern CMOS Manufacturing
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Fundamentals of Silicon Material Properties for Successful Exploitation of Strain Engineering in Modern CMOS Manufacturing

机译:硅材料特性的基础知识,成功开发了现代CMOS制造中的应变工程

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摘要

Semiconductor industry has increasingly resorted to strain as a means of realizing the required node-to-node transistor performance improvements. Straining silicon fundamentally changes the mechanical, electrical (band structure and mobility), and chemical (diffusion and activation) properties. As silicon is strained and subjected to high-temperature thermal processing, it undergoes mechanical deformations that create defects, which may significantly limit yield. Engineers have to manipulate these properties of silicon to balance the performance gains against defect generation. This paper will elucidate the current understanding and ongoing published efforts on all these critical properties in bulk strained silicon. The manifestation of these properties in CMOS transistor performance and designs that successfully harness strain is reviewed in the last section. Current manufacturable strained-silicon technologies are reviewed with particular emphasis on scalability. A detailed case study on recessed silicon germanium transistors illustrates the application of the fundamentals to optimal transistor design.
机译:半导体行业越来越多地采用应变来实现所需的节点到节点晶体管性能的提高。应变硅从根本上改变了机械,电气(能带结构和迁移率)和化学(扩散和活化)性能。随着硅应变并经受高温热处理,硅会经历机械变形而产生缺陷,这可能会严重限制良率。工程师必须操纵硅的这些特性,以平衡性能提升与缺陷产生之间的关系。本文将阐明块体应变硅中所有这些关键特性的当前理解和正在进行的工作。最后一部分将回顾这些特性在CMOS晶体管性能和成功利用应变的设计中的表现。审查了当前可制造的应变硅技术,其中特别强调可伸缩性。关于嵌入式硅锗晶体管的详细案例研究说明了基本原理在最佳晶体管设计中的应用。

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