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Nanoelectronics and Nanosystems: From Transistors to Molecular and Quantum Devices

Autor Karl Goser
en Limba Engleză Paperback – 17 noi 2003
An accessible introduction for electronic engineers, computer scientists and physicists. The overview covers all aspects from underlying technologies to circuits and systems. The challenge of nanoelectronics is not only to manufacture minute structures but also to develop innovative systems for effective integration of the billions of devices. On the system level, various architectures are presented and important features of systems, such as design strategies, processing power, and reliability are discussed. Many specific technologies are presented, including molecular devices, quantum electronic devices, resonant tunnelling devices, single electron devices, superconducting devices, and even devices for DNA and quantum computing. The book also compares these devices with current silicon technologies and discusses limits of electronics and the future of nanosystems.
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Specificații

ISBN-13: 9783540404439
ISBN-10: 3540404430
Pagini: 300
Ilustrații: XII, 281 p.
Dimensiuni: 155 x 235 x 16 mm
Greutate: 0.94 kg
Ediția:2004
Editura: Springer Berlin, Heidelberg
Colecția Springer
Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Graduate

Descriere

Nanoelectronics provides an accessible introduction for prospective and practicing electronic engineers, computer scientists and physicists. The overview covers all aspects from underlying technologies to circuits and systems. The challenge of nanoelectronics is not only to manufacture minute structures but also to develop innovative systems for effective integration of the billions of devices. On the system level, various architectures are presented and important features of systems, such as design strategies, processing power, and reliability are discussed. Many specific technologies are presented, including molecular devices, quantum electronic devices, resonant tunnelling devices, single electron devices, superconducting devices, and even devices for DNA and quantum computing. The book also compares these devices with current silicon technologies and discusses limits of electronics and the future of nanosystems.

Cuprins

1 On the Way to Nanoelectronics.- 2 Potentials of Silicon Technology.- 3 Basics of Nanoelectronics.- 4 Biology-Inspired Concepts.- 5 Biochemical and Quantum-mechanical Computers.- 6 Parallel Architectures for Nanosystems.- 7 Softcomputing and Nanoelectronics.- 8 Complex Integrated Systems and their Properties.- 9 Integrated Switches and Basic Circuits.- 10 Quantum Electronics.- 11 Bioelectronics and Molecular Electronics.- 12 Nanoelectronics with Tunneling Devices.- 13 Single-Electron Transistor (SET).- 14 Nanoelectronics with Superconducting Devices.- 15 The Limits of Integrated Electronics.- 16 Final Objectives of Integrated Electronic Systems.- References.

Textul de pe ultima copertă

The book gives an easy introduction to nanoelectronics for electronic engineers, computer scientists and physicists. The overview covers all aspects from technologies to circuits and systems. The challenge of nanoelectronics is not only to manufacture tiny structures but also to develop innovative systems which allow the billions of devices to be effective. On a system level, various architectures are presented and important features of systems, such as design strategies, processing power, and reliability are discussed. Many technologies are presented including molecular devices, quantum electronic devices, resonant tunnelling devices, single electron devices, superconducting devices, and even devices for DNA and quantum computing. The book includes a comparison to the present state of silicon technologies, a discussion on the limits of electronics, and a vision of future nanosystems.

Caracteristici

Concise textbook for students in electrical engineering and physics
Introduction and overview for R&D people and scientists
Deals with the transition of electronics from the micro- to the nanoscale
Includes quantum computation