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Titlebook: Nuclear Physics Applications on Materials Science; E. Recknagel,J. C. Soares Book 1988 Kluwer Academic Publishers 1988 electron.hyperfine.

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书目名称Nuclear Physics Applications on Materials Science
编辑E. Recknagel,J. C. Soares
视频videohttp://file.papertrans.cn/669/668638/668638.mp4
丛书名称NATO Science Series E:
图书封面Titlebook: Nuclear Physics Applications on Materials Science;  E. Recknagel,J. C. Soares Book 1988 Kluwer Academic Publishers 1988 electron.hyperfine.
描述The last decade has seen a rapid development and growing importance in the application of nuclear physics methods to material sciences. It is a general desire to understand modern material problems on a microscopic scale, which, due to their inherent microscopic nature, made nuclear techniques highly suitable tools for basic and applied research in this field. The Advanced Study Institute on "Nuclear Physics Applications on Ma­ terials Science" brought together scientists active in different but closely re­ lated fields to review and discuss selected topics of bulk properties of metals, semiconductors and insulators as well as properties of surfaces, interfaces and thin films. Most of the excellent lectures and oral presentations of the School are collected in part I of the present volume, while extended abstracts of scientific work presented as posters are added in part II. The pleasant site of the ASI at Viana do Castelo and the northern province of Portugal, Alto Minho, provided the stimulating atmosphere for an in­ spiring School. Many people contributed to the scientific and social success of the institute. Thanks are especially due to the members of the local organizing commi
出版日期Book 1988
关键词electron; hyperfine; ion; neutron; nuclear physics; radiation; scattering
版次1
doihttps://doi.org/10.1007/978-94-009-2800-8
isbn_softcover978-94-010-7759-0
isbn_ebook978-94-009-2800-8Series ISSN 0168-132X
issn_series 0168-132X
copyrightKluwer Academic Publishers 1988
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Resonance Planar Channeling Effect on Superlatticesnductors was first proposed by Esaki and Tsu(1). This type of modulated structures have interesting electron transport and optical properties and they are of technological importance in the development of sophisticated materials for electronic and optical applications. The ion beam channeling techni
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Channeling Radiationtron microscope. Could the electron be treated as a localised classical particle, as in the theory of channeling., or should it rather be considered an extended wave, scattering coherently off crystal planes, as in the theory of electron diffraction.? After much controversy, a clear picture emerged:
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Ion Beams as Tools of Materials Analysisth penetration of accelerated particles depends primarily on the energy of the ions. Thus a wide range of energies have been used to fulfil the requirements of the analysis at different depths. Furthermore the type of interaction is also related to the energy. Low energy ions interact mainly by thei
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Amorphous Phase Formation in Ion-Bombarded Metallic Alloyslast ten years. Amorphous metallic alloys were particularly investigated due to both the fundamental problems involved and the possible technological applications. They have unique electrical and magnetic properties resulting from their amorphous structure and can be exceptionally hard and corrosion
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