High Resolution X Ray Scattering

High Resolution X Ray Scattering
Author: Ullrich Pietsch,Vaclav Holy,Tilo Baumbach
Publsiher: Springer Science & Business Media
Total Pages: 410
Release: 2013-03-09
Genre: Technology & Engineering
ISBN: 9781475740509

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During the last 20 years interest in high-resolution x-ray diffractometry and reflectivity has grown as a result of the development of the semiconductor industry and the increasing interest in material research of thin layers of magnetic, organic, and other materials. For example, optoelectronics requires a subsequent epitaxy of thin layers of different semiconductor materials. Here, the individuallayer thicknesses are scaled down to a few atomic layers in order to exploit quantum effects. For reasons of electronic and optical confinement, these thin layers are embedded within much thicker cladding layers or stacks of multilayers of slightly different chemical composition. It is evident that the interface quality of those quantum weHs is quite important for the function of devices. Thin metallic layers often show magnetic properties which do not ap pear for thick layers or in bulk material. The investigation of the mutual interaction of magnetic and non-magnetic layers leads to the discovery of colossal magnetoresistance, for example. This property is strongly related to the thickness and interface roughness of covered layers.

High resolution X ray Scattering from Thin Films and Multilayers

High resolution X ray Scattering from Thin Films and Multilayers
Author: Vaclav Holy,Ullrich Pietsch,Tilo Baumbach
Publsiher: Unknown
Total Pages: 258
Release: 1999
Genre: Electronic Book
ISBN: OCLC:989539827

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Thin Film Analysis by X Ray Scattering

Thin Film Analysis by X Ray Scattering
Author: Mario Birkholz
Publsiher: John Wiley & Sons
Total Pages: 378
Release: 2006-05-12
Genre: Technology & Engineering
ISBN: 9783527607044

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With contributions by Paul F. Fewster and Christoph Genzel While X-ray diffraction investigation of powders and polycrystalline matter was at the forefront of materials science in the 1960s and 70s, high-tech applications at the beginning of the 21st century are driven by the materials science of thin films. Very much an interdisciplinary field, chemists, biochemists, materials scientists, physicists and engineers all have a common interest in thin films and their manifold uses and applications. Grain size, porosity, density, preferred orientation and other properties are important to know: whether thin films fulfill their intended function depends crucially on their structure and morphology once a chemical composition has been chosen. Although their backgrounds differ greatly, all the involved specialists a profound understanding of how structural properties may be determined in order to perform their respective tasks in search of new and modern materials, coatings and functions. The author undertakes this in-depth introduction to the field of thin film X-ray characterization in a clear and precise manner.

X ray Scattering

X ray Scattering
Author: Alicia Esther Ares
Publsiher: BoD – Books on Demand
Total Pages: 230
Release: 2017-01-25
Genre: Technology & Engineering
ISBN: 9789535128878

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X-ray scattering techniques are a family of nondestructive analytical techniques. Using these techniques, scientists obtain information about the crystal structure and chemical and physical properties of materials. Nowadays, different techniques are based on observing the scattered intensity of an X-ray beam hitting a sample as a function of incident and scattered angle, polarization, and wavelength. This book is intended to give overviews of the relevant X-ray scattering techniques, particularly about inelastic X-ray scattering, elastic scattering, grazing-incidence small-angle X-ray scattering, small-angle X-ray scattering, and high-resolution X-ray diffraction, and, finally, applications of X-ray spectroscopy to study different biological systems.

X Ray Diffuse Scattering from Self Organized Mesoscopic Semiconductor Structures

X Ray Diffuse Scattering from Self Organized Mesoscopic Semiconductor Structures
Author: Martin Schmidbauer
Publsiher: Springer Science & Business Media
Total Pages: 224
Release: 2004-01-09
Genre: Science
ISBN: 3540201793

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This monograph represents a critical survey of the outstanding capabilities of X-ray diffuse scattering for the structural characterization of mesoscopic material systems. The mesoscopic regime comprises length scales ranging from a few up to some hundreds of nanometers. It is of particular relevance at semiconductor layer systems where, for example, interface roughness or low-dimensional objects such as quantum dots and quantum wires have attracted much interest. An extensive overview of the present state-of-the-art theory of X-ray diffuse scattering at mesoscopic structures is given followed by a valuable description of various experimental techniques. Selected up-to-date examples are discussed. The aim of the present book is to combine aspects of self-organized growth of mesoscopic structures with corresponding X-ray diffuse scattering experiments.

Thin Film Analysis by X Ray Scattering

Thin Film Analysis by X Ray Scattering
Author: Mario Birkholz
Publsiher: Wiley-VCH
Total Pages: 378
Release: 2005-12-23
Genre: Technology & Engineering
ISBN: 3527310525

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With contributions by Paul F. Fewster and Christoph Genzel While X-ray diffraction investigation of powders and polycrystalline matter was at the forefront of materials science in the 1960s and 70s, high-tech applications at the beginning of the 21st century are driven by the materials science of thin films. Very much an interdisciplinary field, chemists, biochemists, materials scientists, physicists and engineers all have a common interest in thin films and their manifold uses and applications. Grain size, porosity, density, preferred orientation and other properties are important to know: whether thin films fulfill their intended function depends crucially on their structure and morphology once a chemical composition has been chosen. Although their backgrounds differ greatly, all the involved specialists a profound understanding of how structural properties may be determined in order to perform their respective tasks in search of new and modern materials, coatings and functions. The author undertakes this in-depth introduction to the field of thin film X-ray characterization in a clear and precise manner.

X Ray Scattering from Soft Matter Thin Films

X Ray Scattering from Soft Matter Thin Films
Author: Metin Tolan
Publsiher: Springer
Total Pages: 216
Release: 1999
Genre: Medical
ISBN: UCR:31210013120793

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The properties of soft-matter thin films (e.g. liquid films, polymer coatings, Langmuir-Blodgett multilayers) nowadays play an important role in materials science.They are also very exciting with respect to fundamental questions: When liquids and polymers form thin films, they may be considered as trapped in a quasi-two-dimensional geometry. This confined geometry is expected to alter the properties and structures of these materials considerably. This volume is dedicated to the scattering of x-rays by soft-matter interfaces. X-ray scattering under grazing angles is the only tool for investigating these materials on atomic and mesoscopic length scales. A review of the field is presented with many examples.

High Temperature Superconductor Thin Films at Microwave Frequencies

High Temperature Superconductor Thin Films at Microwave Frequencies
Author: Matthias Hein
Publsiher: Springer Science & Business Media
Total Pages: 422
Release: 1999-07-02
Genre: Technology & Engineering
ISBN: 3540656464

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The book develops a comprehensive understanding of the surface impedance of the oxide high-temperature superconductors in comparison with the conventional superconductor Nb3Sn. Linear and nonlinear microwave responses are treated separately, both in terms of models, theories or numerical approaches and in terms of experimental results. The theoretical treatment connects fundamental aspects of superconductivity to the specific high-frequency properties. The experimental data review the state of the art, as reported by many international groups. The book describes further the main features of appropriate preparation, handling, mounting, and refrigeration techniques, and finally discusses possible applications in passive and active microwave devices.