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Bibliografická citace

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Cham : Springer International Publishing : 2017
1 online zdroj
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ISBN 978-3-319-51847-3 (e-kniha)
ISBN 978-3-319-51846-6 (print)
Advances in Atom and Single Molecule Machines, ISSN 2193-9691
Written by leading international experts, this book summarizes the advances in sample preparation, design and construction of dangling bond atomic scale wires and logic gate circuits at the surface of a passivated semi-conductor. Individual chapters cover different aspects of the sample fabrication from research and development point of view, present design and construction as well as microscopic and spectroscopic characteristics of single dangling atomic wires and logic gates, and discuss the tools for design of large atomic scale circuit on a surface. This edited volume includes selected contributions from the “International Workshop on Atomic Wires” held in Krakow in September 2014 completed and updated with most current results up to mid-2016, and offers for the first time an overview of up-to-date knowledge in the burgeoning field of atomic scale circuits. The book will appeal to researchers and scholars interested in nanoscience and its various sub-fields including, in particular, molecular electronics, atomic scale electronics and nanoelectronics..
* electronic materials
001476514
Surface Hydrogenation of the Si(100)-2x1 and electronic properties of silicon dangling bonds on the Si(100):H surfaces -- Nanopackaging of Si(100)H wafer for atomic scale investigations -- Atomic wires on Ge(001):H surface -- Si(100):H and Ge(100):H Dimer Rows Contrast Inversion in Low-Temperature Scanning Tunnelling Microscope Images -- Band engineering of dangling-bond wires on the Si (100)H surface -- Band Engineering of the Si(001):H Surface by Doping with P and B Atoms -- Electronic Properties of a Single Dangling Bond and of Dangling Bond Wires on a Si(001)H Surface -- Quantum Hamiltonian Computing (QHC) Logic Gates -- The Design of a surface atomic scale logic gate with molecular latch inputs -- Molecule Latches in atomic scale surface logic gates constructed on the Si(100)H surface -- Complex atomic scale surface electronic circuit’s simulator including the pads and the supporting surface.

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