E-Book, Englisch, 456 Seiten, E-Book
Wolf Quantum Nanoelectronics
1. Auflage 2015
ISBN: 978-3-527-66538-9
Verlag: Wiley-VCH
Format: EPUB
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)
An Introduction to Electronic Nanotechnology and Quantum Computing
E-Book, Englisch, 456 Seiten, E-Book
ISBN: 978-3-527-66538-9
Verlag: Wiley-VCH
Format: EPUB
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)
Das Moore'sche Gesetz ist unerbittlich: Die Dimensionen der Elektronik schrumpfen bis auf die molekulare Ebene, und mit großer Wahrscheinlichkeit werden zukünftige Hybridchips mit Einzelmolekülen arbeiten. Dieses Lehrbuch führt den Leser von den Grundlagen der Festkörper- und Quantenphysik bis zur Entwicklung von elektronischen Bauteilen für Datenspeicherung, Kommunikation, Quantencomputer und Energieerzeugung.
Autoren/Hrsg.
Weitere Infos & Material
Ch. 1 Introduction and Review of Electronic Technology
Ch. 2 From Electronics to Nanoelectronics: particles, waves and Schrodinger Equation
Ch. 3 Quantum Description of atoms and molecules
Ch. 4 Quantum Description of metals, semiconductors, junction devices
Ch. 5 Some newer building blocks for nanoelectronic devices
Ch. 6 Fabrication and Characterization Methods for nanoelectronics
Ch. 7 The field effect transistor FET: size limits and alternative forms
Ch. 8 Devices based on electron tunneling, resonant tunnel diodes
Ch. 9 Single electron transistors, molecular electronics, hybrid electronics
Ch. 10 Devices based on electron spin and ferromagnetism
Ch. 11 Qubits vs. binary bits in a Quantum Computer
Ch. 12 Applications of nanoelectronic technology to energy issues
Ch. 13 Summary and brief comment on the future of nanoelectronic technics
Ch. 1 Introduction and Review of Electronic Technology
Ch. 2 From Electronics to Nanoelectronics: particles, waves and Schrodinger Equation
Ch. 3 Quantum Description of atoms and molecules
Ch. 4 Quantum Description of metals, semiconductors, junction devices
Ch. 5 Some newer building blocks for nanoelectronic devices
Ch. 6 Fabrication and Characterization Methods for nanoelectronics
Ch. 7 The field effect transistor FET: size limits and alternative forms
Ch. 8 Devices based on electron tunneling, resonant tunnel diodes
Ch. 9 Single electron transistors, molecular electronics, hybrid electronics
Ch. 10 Devices based on electron spin and ferromagnetism
Ch. 11 Qubits vs. binary bits in a Quantum Computer
Ch. 12 Applications of nanoelectronic technology to energy issues
Ch. 13 Summary and brief comment on the future of nanoelectronic technics




