<P>Today, the concepts of single-electron tunneling (SET) are used to understand and model single-atom and single-molecule nanoelectronics. The characteristics of nanoelectronic devices, especially SET transistors, can be understood on the basis of the physics of nanoelectronic devices and circuit m
Introduction to Nanoelectronic Single-Electron Circuit Design
โ Scribed by Jaap Hoekstra (Author)
- Publisher
- Jenny Stanford Publishing
- Year
- 2009
- Leaves
- 308
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
This book examines single-electron circuits as an introduction to the rapidly expanding field of nanoelectronics. It discusses both the analysis and synthesis of circuits with the nanoelectronic metallic single-electron tunneling (SET) junction device. The basic physical phenomena under consideration are the quantum mechanical tunneling of electron
โฆ Table of Contents
Tunneling Experiments in Nanoelectronics. Current in Electrodynamics and Circuit Theory. Free Electrons in Quantum Mechanics. Current and Tunnel Current in Quantum Physics. Energy in Circuit Theory. Energy in the Switched Two-Capacitor Circuit. Impulse Circuit Model for Single-Electron Tunneling- Zero Tunneling Time. Impulse Circuit Model for Single-Electron Tunneling- Nonzero Tunneling Times. Generalizing the Theory to Multi-Junction Circuits. Single-Electron Tunneling Circuit Examples. Circuit Design Methodologies. More Potential Applications and Challenges.
โฆ Subjects
Engineering & Technology;Electrical & Electronic Engineering;Electromagnetics & Microwaves;Electronics;Physical Sciences;Materials Science
๐ SIMILAR VOLUMES
In Introduction to Nanoelectronic Single-electron Circuit Design, single-electron circuits are studied as an introduction to the rapidly expanding field of nanoelectronics. Treated are both the analysis and synthesis of circuits with the nanoelectronic metallic single-electron tunneling (SET) juncti
<p>Nanoelectronic Circuit Design Edited by: Niraj K. Jha Deming Chen This book is about large-scale electronic circuits design driven by nanotechnology, where nanotechnology is broadly defined as building circuits using nanoscale devices that are either implemented with nanomaterials (e.g., nanowire
<p>Nanoelectronic Circuit Design Edited by: Niraj K. Jha Deming Chen This book is about large-scale electronic circuits design driven by nanotechnology, where nanotechnology is broadly defined as building circuits using nanoscale devices that are either implemented with nanomaterials (e.g., nanowire
<p>Nanoelectronic Circuit Design Edited by: Niraj K. Jha Deming Chen This book is about large-scale electronic circuits design driven by nanotechnology, where nanotechnology is broadly defined as building circuits using nanoscale devices that are either implemented with nanomaterials (e.g., nanowire