Part I of this book comprises chapters covers microelectronics with emphasis on both physics and microelectronic processing.
The chapters on theory of junctions and on microelectronic processing will attract particular interest of the readers. Part II comprises chapters discusses pure physics of semiconductor nanostructures discussing structure, band model and physics of about 12 basic nanostructures in detail.
Thorough discussion and extensive use of diagrams help readers become adept in drawing band model in any discussion on nanostructure physics.
Table of Contents
• Preface
• Microelectronics: Physics and Processing: Semiconductor Theory
• Introduction to Semiconductors
• Semiconductor Crystal Growth
• Doping of Semiconductor Crystal
• Theory of Junctions
• Microelectronic Processing
• Structure and Fabrication of Some Microdevices
• Nanostructure Physics and Nanoelectronics: Theories of Electron in Crystals
• Energy Band Structure of Bulk Real Crystals
• Structure, Band Model and Physics of Basic Semiconductor Nanostructures
• Nanostructures Physics of Isolated Quantum Well in Detail
• Nanostructure Physics of Sawtooth and Doping Superlattices, Quantum Wire and Quantum Dot
• Transport in Nanostructures
• Nanostructures Physics and Nanoelectronics in Uniform Magnetic Field
• Nanostructure Physics of MODFET in Detail
• Bibliography.
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Sujaul Chowdhury.: Department of Physics Shahjalal University of Science and Technology, Syllhet 3114, Bangladesh
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