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Physics of semiconductor devices

Author: Massimo Rudan
Publisher: New York : Springer, [2015] ©2015
Edition/Format:   Print book : EnglishView all editions and formats
Summary:

This book describes the basic physics of semiconductors, including the hierarchy of transport models, and connects the theory with the functioning of actual semiconductor devices.

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Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Massimo Rudan
ISBN: 9781493911509 1493911503
OCLC Number: 890627151
Notes: This volume originates from lectures of Solid-State Electronics and Microelectronics that have been given since 1978 at the School of Engineering of the University of Bologna. Its scope is to provide the elementary principles of classical mechanics and electromagnetism, introduce the concepts of quantum mechanics and solid-state theory, and decribe the basic physics of semiconductors including the hierarchy of transport models, and ending up with the standard mathematical model of semicoductor devices and the analysis of the ehavior of basic devices--Preface, page vii.
Description: xxiii, 649 pages : illustrations ; 24 cm
Contents: A review of analytical mechanics and electromagnetism. Analytical mechanics --
Coordinate transformations and invariance properties --
Applications of the concepts of analytical mechanics --
Electromagnetism --
Applications of the concepts of electromagnetism. Introductory concepts to statistical and quantum mechanics. Classical distribution function and transport equation --
From classical mechanics to quantum mechanics --
Time-independent Schrödinger equation --
Time-dependent Schrödinger equation --
General methods of quantum mechanics. Applications of the Schrödinger equation. Elementary case --
Cases related to the linear harmonic oscillator --
Other examples of the Schrödinger equation --
Time-dependent perturbation theory. Systems of interacting particles --
Quantum statistics. Many-particle systems --
Separation of many-particle systems. Applications to semiconducting crystals. Periodic structures --
Electrons and holes in semiconductors at equilibrium. Transport phenomena in semiconductors. Mathematical model of semiconductor devices --
Generation-recombination and mobility. Basic semiconductor devices. Bipolar devices --
MOS devices. Miscellany. Thermal diffusion --
Thermal oxidation --
Layer deposition --
Measuring the semiconductor parameters.
Responsibility: Massimo Rudan.
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