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Titlebook: Anomalous X-Ray Scattering for Materials Characterization; Atomic-Scale Structu Yoshio Waseda Book 2002 Springer-Verlag Berlin Heidelberg 2

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期刊全称Anomalous X-Ray Scattering for Materials Characterization
期刊简称Atomic-Scale Structu
影响因子2023Yoshio Waseda
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发行地址This book is the first one on anomalous X-ray scattering.Includes supplementary material:
学科分类Springer Tracts in Modern Physics
图书封面Titlebook: Anomalous X-Ray Scattering for Materials Characterization; Atomic-Scale Structu Yoshio Waseda Book 2002 Springer-Verlag Berlin Heidelberg 2
影响因子The production of multi layered thin films with sufficient reliability is a key technology for device fabrication in micro electronics. In the Co/Cu type multi layers, for example, magnetoresistance has been found as large as 80 % at 4. 2 K and 50 % at room temperature. In addition to such gigantic mag netoresistance, these multi layers indicate anti ferromagnetic and ferromag netic oscillation behavior with an increase in the thickness of the layers of the non magnetic component. These interesting properties of the new synthetic flmctional materials are attributed to their periodic and interracial structures at a microscopic level, although the origin of such peculiar features is not fully understood. Information on the surface structure or the number density of atoms in the near surface region may provide better insight. Amorphous alloys, frequently referred to as metallic glasses, are produced by rapid quenching from the melt. The second generation amorphous alloys, called "bulk amorphous alloys", have been discovered in some Pd based and Zr based alloy systems, with a super cooled liquid region at more than 120 K. In these alloy systems, one can obtain a sample thickness of sev
Pindex Book 2002
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发表于 2025-3-21 22:01:05 | 显示全部楼层
https://doi.org/10.1007/3-540-46008-XAmorphous alloys; Atomic structure; Crystals; Materials analysis; Quasicrystals; REM; STEM
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978-3-662-14637-8Springer-Verlag Berlin Heidelberg 2002
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Hybrid Indirect Branch Predictors,mpossible in non-crystalline systems such as liquids and glasses, because of the lack of long-range structure periodicity. However, the atomic-scale structure of non-crystalline systems can be described quantitatively in terms of the so-called radial distribution function (RDF), which indicates the
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https://doi.org/10.1007/978-3-319-51180-1ch an inner electron can be ejected into the continuum states (see, for example, [.]). These X-ray absorption phenomena include predominantly the excitation of K-shell or L-shell electrons, and thus our attention focuses mainly upon the K-absorption edge or the L-absorption edge. In conventional X-r
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https://doi.org/10.1007/978-3-031-01766-7iation from a sample. In this energy region, the real part of the anomalous dispersion factor changes drastically, whereas the imaginary part and its energy variation are quite small. However, as long as only characteristic radiation produced from the sealed tube X-ray source is used, the change due
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