Nanoscale Devices Fundamentals And Applications

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Nanoscale Devices - Fundamentals and Applications

Author: Rudolf Gross
language: en
Publisher: Springer Science & Business Media
Release Date: 2007-05-16
This book collects papers on the fundamentals and applications of nanoscale devices, first presented at the NATO Advanced Research Workshop on Nanoscale Devices – Fundamentals and Applications held in Kishinev, Moldova, in September 2004. The focus is on the synthesis and characterization of nanoscale magnetic materials; fundamental physics and materials aspects of solid-state nanostructures; development of novel device concepts and design principles for nanoscale devices; and on applications in electronics with emphasis on defence against the threat of terrorism.
Nanoscale Devices

The primary aim of this book is to discuss various aspects of nanoscale devices design and their applications including transport mechanism, modeling, and circuit applications. Furthermore, the book will develop a strong foundation to understand the need for moving from conventional MOSFET to the novel devices, as well as, how the device physics and transport phenomenon changes with reduction in the device size to a nanoscale regime. Details about the simulation technique and/or fabrication process flow of the various nanoscale devices is included along with simulated results of device performance parameters. The numerical and theoretical methods will be used to describe the related concepts. Key Features, Provides a platform for modeling and analysis of state-of-the-art devices in nanoscale regime, Reviews issues related to optimizing the sub-nanometer device performance, Addresses simulation aspect and/or fabrication process of devices, Explores associated circuit design aspects and applications, Includes design problems at the end of each chapter Book jacket.
Theoretical Foundations of Nanoscale Quantum Devices

Author: Malin Premaratne
language: en
Publisher: Cambridge University Press
Release Date: 2021-01-07
This self-contained text describes the underlying theory and approximate quantum models of real nanodevices for nanotechnology applications.