Nanoelectronics and information technology : advanced electronic materials and novel devices
著者
書誌事項
Nanoelectronics and information technology : advanced electronic materials and novel devices
Wiley-VCH, c2003
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注記
Includes bibliographies and index
内容説明・目次
内容説明
Providing an introduction to electronic materials and device concepts for the major areas of current and future information technology, the value of this book lies in its focus on the underlying principles. Illustrated by contemporary examples, these basic principles will hold, despite the rapid developments in this field, especially emphasizing nanoelectronics. There is hardly any field where the links between basic science and application are tighter than in nanoelectronics & information technology. As an example, the design of resonant tunneling transistors, single electron devices or molecular electronic structures is simply inconceivable without delving deep into quantum mechanics. This textbook is primarily aimed at students of physics, electrical engineering and information technology, as well as material science in their 3rd year and higher. It is equally of interest to professionals wanting a broader overview of this hot topic. "Nanoelectronics and Information Technology" by Rainer Waser and his colleagues, is an outstanding compendium of information about an exciting new field.
Owing to its high quality and complete coverage of the many topics in this area, this well referenced book will have a long and very useful life as a primary text for students experienced, and new in nanoelectronics. "It is a very impressive book." (Richard Siegel)
目次
Contents. Preface. General Introduction. I. FUNDAMENTALS. Dielectrics. Ferroelectrics. Electronic Properties and Quantum Effects. Magnetoelectronics -- Magnetism and Magnetotransport in Layered Structures. Organic Molecules -- Electronic Structures, Properties, and Reactions. Neurons -- The Molecular Basis of their Electrical Excitability. Circuit and System Design. II. TECHNOLOGY AND ANALYSIS. Film Deposition Methods. Lithography. Material Removing Techniques -- Etching and Chemical Mechancial Polishing. Analysis by Diffraction and Fluorescence Methods. Scanning Probe Techniques. III. LOGIC DEVICES. Silicon MOSFETs -- Novel Materials and Alternative Concepts. Ferroelectric Field Effect Transistors. Quantum Transport Devices Based on Resonant Tunneling. Single--Electron Devices for Logic Applications. Superconductor Digital Electronics. Quantum Computing Using Superconductors. Carbon Nanotubes for Data Processing. Molecular Electronics. IV. RANDOM ACCESS MEMORIES. High--Permittivity Materials for DRAMs. Ferroelectric Random Access Memories. Magnetoresistive RAM. V. MASS STORAGE DEVICES. Hard Disk Drives. Magneto--Optical Discs. Rewriteable DVDs Based on Phase Change Materials. Holographic Data Storage. AFM--Based Mass Storage -- The Millipede Concept. VI. DATA TRANSMISSION AND INTERFACES. Transmission on Chip and Board Level. Photonic Networks. Microwave Communication Systems -- Novel Approaches for Passive Devices. Neuroelectronic Interfacing: Semiconductor Chips with Ion Channels, Nerve Cells, and Brain. VII. SENSOR ARRAYS AND IMAGING SYSTEMS. Optical 3--D Time--of--Flight Imaging System. Pyroelectric Detector Arrays for IR Imaging. Electronic Noses. 2--D Tactile Sensors and Tactile Sensor Arrays. VIII. DISPLAYS. Liquid Crystal Displays. Organic Light Emitting Devices. Field--Emission and Plasma Displays. Electronic Paper. Abbreviations. Symbols. Authors. Index.
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