Structural Analysis of Metallic Glasses with Computational Homology

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This book introduces the application of computational homology for structural analysis of metallic glasses. Metallic glasses, relatively new materials in the field of metals, are the next-generation structural and functional materials owing to their excellent properties. To understand their properties and to develop novel metallic glass materials, it is necessary to uncover their atomic structures which have no periodicity, unlike crystals. Although many experimental and simulation studies have been performed to reveal the structures, it is extremely difficult to perceive a relationship between structures and properties without an appropriate point of view, or language. The purpose here is to show how a new approach using computational homology gives a useful insight into the interpretation of atomic structures. It is noted that computational homology has rapidly developed and is now widely applied for various data analyses. The book begins with a brief basic survey of metallic glasses and computational homology, then goes on to the detailed procedures and interpretation of computational homology analysis for metallic glasses. Understandable and readable information for both materials scientists and mathematicians is also provided.

Author(s): Akihiko Hirata, Kaname Matsue, Mingwei Chen (auth.)
Series: SpringerBriefs in the Mathematics of Materials 2
Edition: 1
Publisher: Springer Japan
Year: 2016

Language: English
Pages: XIV, 66
Tags: Mathematical Applications in the Physical Sciences; Category Theory, Homological Algebra; Math. Applications in Chemistry

Front Matter....Pages i-xiv
Introduction....Pages 1-7
Metallic Glasses....Pages 9-14
Overview of Cubical Homology....Pages 15-36
Application of Computational Homology to Metallic Glass Structures....Pages 37-46
Conclusion....Pages 47-50
Back Matter....Pages 51-66