Автор: Brajesh Kumar Kaushik (Editor)
Издательство: Elsevier
ISBN: 9780128133545
Год: 2018
Страниц: 476
Язык: английский
Формат: pdf (true)
Размер: 17.45 MB
Nanoelectronics: Devices, Circuits and Systems explores current and emerging trends in the field of nanoelectronics, from both a devices-to-circuits and circuits-to-systems perspective. It covers a wide spectrum and detailed discussion on the field of nanoelectronic devices, circuits and systems. This book presents an in-depth analysis and description of electron transport phenomenon at nanoscale dimensions. Both qualitative and analytical approaches are taken to explore the devices, circuit functionalities and their system applications at deep submicron and nanoscale levels. Recent devices, including FinFET, Tunnel FET, and emerging materials, including graphene, and its applications are discussed.
In addition, a chapter on advanced VLSI interconnects gives clear insight to the importance of these nano-transmission lines in determining the overall IC performance. The importance of integration of optics with electronics is elucidated in the optoelectronics and photonic integrated circuit sections of this book. This book provides valuable resource materials for scientists and electrical engineers who want to learn more about nanoscale electronic materials and how they are used.
The nanoelectronics area has grown consistently over last few decades at all levels of design and implementation, let it be at material, device, circuit, and architectural. This trend is expected to continue in future also, but will require breakthroughs in newer technologies such as photonics, plasmonics, spintronics, and other areas. With the emerging materials and nanodevices, efforts are being made by researchers across the world to gain better physical insight of the device, circuit, and system characteristics.
Key Features
Shows how electronic transport works at the nanoscale level
Demonstrates how nanotechnology can help engineers create more effective circuits and systems
Assesses the most commonly used nanoelectronic devices, explaining which is best for different situations
Readership
Materials scientists and electrical engineering researchers who want to learn more about how electronic circuits and devices work at the nanoscale level
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