E-Book, Englisch, 364 Seiten, Web PDF
Tomozawa / Doremus Glass I: Interaction with Electromagnetic Radiation
1. Auflage 2013
ISBN: 978-1-4832-1821-2
Verlag: Elsevier Science & Techn.
Format: PDF
Kopierschutz: 1 - PDF Watermark
Treatise on Materials Science and Technology, Vol. 12
E-Book, Englisch, 364 Seiten, Web PDF
ISBN: 978-1-4832-1821-2
Verlag: Elsevier Science & Techn.
Format: PDF
Kopierschutz: 1 - PDF Watermark
Treatise on Materials Science and Technology, Volume 12: Glass I: Interaction with Electromagnetic Radiation focuses on the interaction of electromagnetic radiation with glass. The book discusses the optical absorption of glasses; the photochromic glass; and the anomalous birefringence in oxide glasses. The text also describes the light scattering of glass; the resonance effects in glasses; as well as the dielectric characteristics of glass. Materials scientists, materials engineers, and graduate students taking related courses will find the book useful.
Autoren/Hrsg.
Weitere Infos & Material
1;Front Cover
;1
2;Glass I: Interaction with Electromagnetic Radiation
;4
3;Copyright Page
;5
4;Table of Contents
;6
5;List of Contributors;8
6;Preface;10
7;Contents of Previous Volumes;12
8;Chapter 1. Introduction
;16
8.1;References;18
9;Chapter 2. Optical Absorption of Glasses
;20
9.1;I. Introduction
;20
9.2;II. Ultraviolet Absorption;25
9.3;III. Visible Absorption;50
9.4;IV. Infrared Absorption;76
9.5;V. Summary;97
9.6;References;97
10;Chapter 3. Photochromic Glass
;106
10.1;I. Introduction;106
10.2;II. Homogeneous Glasses;107
10.3;III. Suspension of Crystallites in Glasses;111
10.4;IV. Glasses Containing Silver Halides;115
10.5;References;136
11;Chapter 4. Anomalous Birefringence in Oxide Glasses
;138
11.1;I. Introduction;138
11.2;II. Definition and Experimental Method;139
11.3;III. Single-Phase Glass and Birefringence by Frozen-in Strain;142
11.4;IV. Glass-in-Glass Phase Separation and Birefringence by Frozen-in Strain
;142
11.5;V. Glass-in-Glass Phase Separation and Microstructural Birefringence;145
11.6;VI. Crystallization and Optical Anisotropy;159
11.7;VII. Chain Structure in Phosphate Glass and Birefringence;165
11.8;VIII. Microporous Glass and Microstructural Birefringence;166
11.9;IX. Summary and Conclusion;170
11.10;ACKNOWLEDGMENTS;171
11.11;References;171
12;Chapter 5. Light Scattering of Glass
;174
12.1;I. Introduction;175
12.2;II. Theoretical Background;177
12.3;III. Apparatus and Procedure;194
12.4;IV. Results—Discussion;196
12.5;V. Summary and Conclusion;233
12.6;ACKNOWLEDGMENTS;234
12.7;References;234
13;Chapter 6. Resonance Effects in Glasses
;240
13.1;I. Introduction;240
13.2;II. Analysis of Magnetic Resonance and Mössbauer Spectra;243
13.3;III. ESR in Glasses;249
13.4;IV. NMR in Glasses;272
13.5;V. Mossbauer Spectroscopy in Glasses;289
13.6;VI. Concluding Remarks;293
13.7;References;295
14;Chapter 7. Dielectric Characteristics of Glass
;300
14.1;I. Introduction;300
14.2;II. Basic Information;303
14.3;III. Experimental Observations;311
14.4;IV. Proposed Mechanisms;323
14.5;V. Discussion;338
14.6;VI. Summary;359
14.7;ACKNOWLEDGMENTS;359
14.8;References;359
15;Index;364