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Subject: Physics  Book Title: Advanced Tomographic Methods in Materials Research and Engineering
Advanced Tomographic Methods in Materials Research and Engineering
Banhart, John (Editor), Department of Materials Science, Hahn-Meitner-Institute, Berlin
Print publication date: 2008
Published to Oxford Scholarship Online: May 2008
Print ISBN-13: 978-0-19-921324-5
doi:10.1093/acprof:oso/9780199213245.001.0001
 
Abstract: Tomography provides three-dimensional images of heterogeneous materials or engineering components, and offers an unprecedented insight into their internal structure. By using X-rays generated by synchrotrons, neutrons from nuclear reactors, or electrons provided by transmission electron microscopes, hitherto invisible structures can be revealed which are not accessible to conventional tomography based on X-ray tubes. This book provides detailed descriptions of the recent developments in this field, especially the extension of tomography to materials research and engineering. The book is grouped into four parts: a general introduction into the principles of tomography, image analysis and the interactions between radiation and matter, and one part each for synchrotron X-ray tomography, neutron tomography, and electron tomography. Within these parts, individual chapters written by different authors describe important versions of tomography, and also provide examples of applications to demonstrate the capacity of the methods.

Keywords: heterogeneous materials, image analysis, radiation, matter, synchrotron X-ray tomography, neutron tomography, electron tomography
Table of Contents
Preface
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1. INTRODUCTION
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2. SOME MATHEMATICAL CONCEPTS FOR TOMOGRAPHIC RECONSTRUCTION
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3. VISUALIZATION, PROCESSING AND ANALYSIS OF TOMOGRAPHIC DATA
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4. RADIATION SOURCES AND INTERACTION OF RADIATION WITH MATTER
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5. SYNCHROTRON X-RAY ABSORPTION TOMOGRAPHY
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6. PHASE-CONTRAST AND HOLOGRAPHIC TOMOGRAPHY
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7. TOMOGRAPHY USING MAGNIFYING OPTICS
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8. SCANNING TOMOGRAPHY
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9. THREE-DIMENSIONAL X-RAY DIFFRACTION
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10. DETECTORS FOR SYNCHROTRON TOMOGRAPHY
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11. FUNDAMENTALS OF ELECTRON TOMOGRAPHY
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12. APPLICATIONS OF ELECTRON TOMOGRAPHY
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13. NEUTRON ABSORPTION TOMOGRAPHY
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14. NEUTRON PHASE-CONTRAST AND POLARIZED NEUTRON TOMOGRAPHY
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15. NEUTRON-REFRACTION AND SMALL-ANGLE SCATTERING TOMOGRAPHY
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Appendix
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Index
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doi:10.1093/acprof:oso/9780199213245.001.0001
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I BASIC CONCEPTS
II SYNCHROTRON X-RAY TOMOGRAPHY
III ELECTRON TOMOGRAPHY
IV NEUTRON TOMOGRAPHY