
Granular Nanoelectronics
Plenum Publishing Co.,N.Y.
Published on 31. July 1991
Book
Hardback
XII, 590 pages
978-0-306-43881-3 (ISBN)
Description
The technological means now exists for approaching the fundamentallimiting scales of solid state electronics in which a single carrier can, in principle, represent a single bit in an information flow. In this light, the prospect of chemically, or biologically, engineered molccular-scale structures which might support information processing functions has enticed workers for many years. The one common factor in all suggested molecular switches, ranging from the experimentally feasible proton-tunneling structure, to natural systems such as the micro-tubule, is that each proposed structure deals with individual information carrying entities. Whereas this future molecular electronics faces enormous technical challenges, the same Iimit is already appearing in existing semiconducting quantum wires and small tunneling structures, both superconducting and normal meta! devices, in which the motion of a single eh arge through the tunneling barrier can produce a sufficient voltage change to cut-off further tunneling current. We may compare the above situation with today's Si microelectronics, where each bit is encoded as a very !arge number, not necessarily fixed, of electrons within acharge pulse. The associated reservoirs and sinks of charge carriers may be profitably tapped and manipulated to proviele macro-currents which can be readily amplified or curtailed. On the other band, modern semiconductor ULSI has progressed by adopting a linear scaling principle to the down-sizing of individual semiconductor devices.
More details
Series
Edition
1991 ed.
Language
English
Place of publication
New York
United States
Publishing group
Springer Science+Business Media
Target group
Professional and scholarly
Research
Illustrations
XII, 590 p.
Dimensions
Height: 241 mm
Width: 160 mm
Thickness: 37 mm
Weight
1068 gr
ISBN-13
978-0-306-43881-3 (9780306438813)
DOI
10.1007/978-1-4899-3689-9
Schweitzer Classification
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David K. Ferry | John R. Barker | Carlo Jacoboni
Granular Nanoelectronics
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01/2014
Springer
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David K. Ferry | John R. Barker | Carlo Jacoboni
Granular Nanoelectronics
E-Book
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Springer
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