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Silicon-Germanium (SiGe) Nanostructures: Production, Properties and Applications in Electronics (Woodhead Publishing Series in Electronic and Optical Materials) - Hardcover

 
9781845696894: Silicon-Germanium (SiGe) Nanostructures: Production, Properties and Applications in Electronics (Woodhead Publishing Series in Electronic and Optical Materials)

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Synopsis

Nanostructured silicon-germanium (SiGe) opens up the prospects of novel and enhanced electronic device performance, especially for semiconductor devices. Silicon-germanium (SiGe) nanostructures reviews the materials science of nanostructures and their properties and applications in different electronic devices.

The introductory part one covers the structural properties of SiGe nanostructures, with a further chapter discussing electronic band structures of SiGe alloys. Part two concentrates on the formation of SiGe nanostructures, with chapters on different methods of crystal growth such as molecular beam epitaxy and chemical vapour deposition. This part also includes chapters covering strain engineering and modelling. Part three covers the material properties of SiGe nanostructures, including chapters on such topics as strain-induced defects, transport properties and microcavities and quantum cascade laser structures. In Part four, devices utilising SiGe alloys are discussed. Chapters cover ultra large scale integrated applications, MOSFETs and the use of SiGe in different types of transistors and optical devices.

With its distinguished editors and team of international contributors, Silicon-germanium (SiGe) nanostructures is a standard reference for researchers focusing on semiconductor devices and materials in industry and academia, particularly those interested in nanostructures.

  • Reviews the materials science of nanostructures and their properties and applications in different electronic devices
  • Assesses the structural properties of SiGe nanostructures, discussing electronic band structures of SiGe alloys
  • Explores the formation of SiGe nanostructuresfeaturing different methods of crystal growth such as molecular beam epitaxy and chemical vapour deposition

"synopsis" may belong to another edition of this title.

About the Authors

Yasuhiro Shiraki is a Professor at Tokyo City University Advanced Research Laboratories, Japan.

Noritaka Usami is a Professor at the Graduate School of Engineering, Nagoya University, Japan.

From the Back Cover

Nanostructured silicon-germanium (SiGe) opens up the prospects of novel and enhanced electronic device performance, especially for semiconductor devices. Silicon-germanium (SiGe) nanostructures reviews the materials science of nanostructures and their properties and applications in different electronic devices.

The introductory part one covers the structural properties of SiGe nanostructures, with a further chapter discussing electronic band structures of SiGe alloys. Part two concentrates on the formation of SiGe nanostructures, with chapters on different methods of crystal growth such as molecular beam epitaxy and chemical vapour deposition. This part also includes chapters covering strain engineering and modelling. Part three covers the material properties of SiGe nanostructures, including chapters on such topics as strain-induced defects, transport properties and microcavities and quantum cascade laser structures. In Part four, devices utilising SiGe alloys are discussed. Chapters cover ultra large scale integrated applications, MOSFETs and the use of SiGe in different types of transistors and optical devices.

With its distinguished editors and team of international contributors, Silicon-germanium (SiGe) nanostructures is a standard reference for researchers focusing on semiconductor devices and materials in industry and academia, particularly those interested in nanostructures.

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9780081017395: Silicon-Germanium (SiGe) Nanostructures: Production, Properties and Applications in Electronics (Woodhead Publishing Series in Electronic and Optical Materials)

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ISBN 10:  0081017391 ISBN 13:  9780081017395
Publisher: Woodhead Publishing, 2016
Softcover