Nanotechnology for Electronic Materials and Devices

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Nanostructure Science and Technology

ISBN: 1441936122
ISBN 13: 9781441936127
Herausgeber: Anatoli Korkin/Evgeni Gusev/Jan K Labanowski et al
Verlag: Springer Verlag GmbH
Umfang: viii, 368 S., 232 s/w Illustr., 368 p. 232 illus.
Erscheinungsdatum: 26.05.2011
Auflage: 1/2007
Produktform: Kartoniert
Einband: KT

This book is designed as an introduction for graduate students, engineers, and researchers who want to understand the current status and future trends of micro- and nano-electronic materials and devices. It also serves as an essential reference for nanotechnology “gurus” who need to keep abreast of the latest directions and challenges in microelectronic technology. Written by leading experts in each research area the viewpoints presented can help to foster further research and cross-disciplinary interactions required to surmount the barriers facing future generations of technology design.

Artikelnummer: 953232 Kategorie:

Beschreibung

InhaltsangabeA Hybrid Route from CMOS to Nano and Molecular Electronics.- From SOI Basics to Nano-Size MOSFETs.- Strategies of Nanoscale Semiconductor Lasers.- Silicon Nanocrystal Based Memory Devices for NVM and DRAM Applications.- Novel Dielectric Materials for Future Transistor Generations.- Scanning Force Microscopies for Imaging and Characterisation of Nanostructured Materials.- Intrinsic Parameter Fluctuations in Nano-CMOS Devices: Every Atom Counts.- Lattice Polarons and Switching in Molecular Nano-wires and Quantum Dots.

Inhaltsverzeichnis

A Hybrid Route from CMOS to Nano and Molecular Electronics.- From SOI Basics to Nano-Size MOSFETs.- Strategies of Nanoscale Semiconductor Lasers.- Silicon Nanocrystal Based Memory Devices for NVM and DRAM Applications.- Novel Dielectric Materials for Future Transistor Generations.- Scanning Force Microscopies for Imaging and Characterisation of Nanostructured Materials.- Intrinsic Parameter Fluctuations in Nano-CMOS Devices: Every Atom Counts.- Lattice Polarons and Switching in Molecular Nano-wires and Quantum Dots.

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