Strained-Si Heterostructure Field Effect Devices

Strained-Si Heterostructure Field Effect Devices

EnglishHardback
Maiti, C.K
Taylor & Francis Ltd
EAN: 9780750309936
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Detailed information

A combination of the materials science, manufacturing processes, and pioneering research and developments of SiGe and strained-Si have offered an unprecedented high level of performance enhancement at low manufacturing costs. Encompassing all of these areas, Strained-Si Heterostructure Field Effect Devices addresses the research needs associated with the front-end aspects of extending CMOS technology via strain engineering. The book provides the basis to compare existing technologies with the future technological directions of silicon heterostructure CMOS.

After an introduction to the material, subsequent chapters focus on microelectronics, engineered substrates, MOSFETs, and hetero-FETs. Each chapter presents recent research findings, industrial devices and circuits, numerous tables and figures, important references, and, where applicable, computer simulations. Topics covered include applications of strained-Si films in SiGe-based CMOS technology, electronic properties of biaxial strained-Si films, and the developments of the gate dielectric formation on strained-Si/SiGe heterolayers. The book also describes silicon hetero-FETs in SiGe and SiGeC material systems, MOSFET performance enhancement, and process-induced stress simulation in MOSFETs.

From substrate materials and electronic properties to strained-Si/SiGe process technology and devices, the diversity of R&D activities and results presented in this book will no doubt spark further development in the field.

EAN 9780750309936
ISBN 0750309938
Binding Hardback
Publisher Taylor & Francis Ltd
Publication date January 11, 2007
Pages 436
Language English
Dimensions 234 x 156
Country United Kingdom
Readership Professional & Scholarly
Authors Bera, L.K; Chattopadhyay, S; Maiti, C.K
Illustrations 29 Tables, black and white; 18 Halftones, black and white; 299 Illustrations, black and white
Series editors Eades, Alwyn; Ma Evan
Series Series in Materials Science and Engineering