
Nanoelectronics
From Device Physics and Fabrication Technology to Advanced Transistor Concepts
- 468 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Nanoelectronics
From Device Physics and Fabrication Technology to Advanced Transistor Concepts
About this book
In recent years, nanoelectronics has become very interdisciplinary requiring students to master aspects of physics, electrical engineering, chemistry etc. The 2nd edition of this textbook is a comprehensive overview of nanoelectronics covering the necessary quantum mechanical and solid-state physics foundation, an overview of semiconductor fabrication as well as a brief introduction into device simulation using the non-equilibrium Greens function formalism. Equipped with this, the work discusses nanoscale field-effect transistors and alternative device concepts such as Schottky-barrier MOSFETs as well as steep slope transistors based on different materials. In addition, cryogenic operation of MOSFETs for the realization of, e.g., classical control electronics of semiconducting spin qubits is studied.
The work contains a number of tasks, examples and exercises with step-by-step video solutions as well as tutorial videos that deepen the understanding of the material. With additional access to simulation tools that allow students to do computational experiments, the emphasis is on thorough explanation of the material enabling students to carry out their own research.
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Information
Table of contents
- Title Page
- Copyright
- Contents
- Preface
- 1âIntroduction
- 2âSolid-State Physics Foundation
- 3âSemiconductor Fabrication
- 4âBasic Ingredients for Nanoelectronics Devices
- 5âMetal-Oxide-Semiconductor Field-Effect Transistors
- 6âDevice Simulation
- 7âMetal-Source-Drain Field-Effect Transistors
- 8âCarbon Nanotube Field-Effect Transistors
- 9âSteep Slope Transistors
- 10âDevice Based on Two-Dimensional Materials
- 11âCryogenic Electronics
- Subject Index