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Ebook - An Essential Guide to Electronic Material Surfaces and Interfaces


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About This Book

An Essential Guide to Electronic Material Surfaces and Interfaces is a streamlined yet comprehensive introduction that covers the basic physical properties of electronic materials, the experimental techniques used to measure them, and the theoretical methods used to understand, predict, and design them.
Starting with the fundamental electronic properties of semiconductors and electrical measurements of semiconductor interfaces, this text introduces students to the importance of characterizing and controlling macroscopic electrical properties by atomic-scale techniques. The chapters that follow present the full range of surface and interface techniques now being used to characterize electronic, optical, chemical, and structural properties of electronic materials, including semiconductors, insulators, nanostructures, and organics. The essential physics and chemistry underlying each technique is described in sufficient depth for students to master the fundamental principles, with numerous examples to illustrate the strengths and limitations for specific applications. As well as references to the most authoritative sources for broader discussions, the text includes internet links to additional examples, mathematical derivations, tables, and literature references for the advanced student, as well as professionals in these fields. This textbook fills a gap in the existing literature for an entry-level course that provides the physical properties, experimental techniques, and theoretical methods essential for students and professionals to understand and participate in solid-state electronics, physics, and materials science research.
An Essential Guide to Electronic Material Surfaces and Interfaces is an introductory-to-intermediate level textbook suitable for students of physics, electrical engineering, materials science, and other disciplines. It is essential reading for any student or professional engaged in surface and interface research, semiconductor processing, or electronic device design.



Contents


CHP 1    -   Why Surfaces and Interfaces of Electronic Materials
CHP 2    -   Semiconductor Electronic and Optical Properties
CHP 3    -   Electrical Measurements of Surfaces and Interfaces
CHP 4    -   Localized States at Surfaces and Interfaces
CHP 5    -   Ultrahigh Vacuum Technology
CHP 6    -   Surface and Interface Analysis
CHP 7    -   Surface and Interface Spectroscopies
CHP 8    -   Dynamical Depth‐Dependent Analysis and Imaging
CHP 9    -   Electron Beam Diffraction and Microscopy of Atomic‐Scale Geometrical Structure
CHP 10  -   Scanning Probe Techniques
CHP 11  -   Optical Spectroscopies
CHP 12  -   Electronic Material Surfaces
CHP 13  -   Surface Electronic Applications
CHP 14  -   Semiconductor Heterojunctions
CHP 15  -   Metal–Semiconductor Interfaces
CHP 16  -   Next Generation Surfaces and Interfaces
Glossary of Commonly Used Symbols
Table of Acronyms
Table of Physical Constants and Conversion Factors
Semiconductor Properties
Index

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