Physics of semiconductor devices.
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| Main Author: | |
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| Format: | Electronic |
| Language: | English |
| Published: |
New York :
Springer,
2015.
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Table of 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.