Physics, Fabrication, and Applications of Multilayered Structures

Physics, Fabrication, and Applications of Multilayered Structures
Author :
Publisher : Springer Science & Business Media
Total Pages : 414
Release :
ISBN-10 : 9781475700916
ISBN-13 : 1475700911
Rating : 4/5 (16 Downloads)

Book Synopsis Physics, Fabrication, and Applications of Multilayered Structures by : Claude Weisbuch

Download or read book Physics, Fabrication, and Applications of Multilayered Structures written by Claude Weisbuch and published by Springer Science & Business Media. This book was released on 2013-06-29 with total page 414 pages. Available in PDF, EPUB and Kindle. Book excerpt: Low-dimensional materials are of fundamental interest in physics and chemistry and have also found a wide variety of technological applica tions in fields ranging from microelectronics to optics. Since 1986, several seminars and summer schools devoted to low-dimensional systems have been supported by NATO. The present one, Physics, Fabrication and Applications of Multilayered structures, brought together specialists from different fields in order to review fabrication techniques, charac terization methods, physics and applications. Artificially layered materials are attractive because alternately layering two (or more) elements, by evaporation or sputtering, is a way to obtain new materials with (hopefully) new physical properties that pure materials or alloys do not allow. These new possibilities can be ob tained in electronic transport, optics, magnetism or the reflectivity of x-rays and slow neutrons. By changing the components and the thickness of the layers one can track continuously how the new properties appear and follow the importance of the multilayer structure of the materials. In addition, with their large number of interfaces the study of inter face properties becomes easier in multilayered structures than in mono layers or bilayers. As a rule, the role of the interface quality, and also the coupling between layers, increases as the thickness of the layer decreases. Several applications at the development stage require layer thicknesses of just a few atomic layers.


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