图书简介
Amorphous solids (including glassy and non-crystalline solids) are ubiquitous since the vast majority of solids naturally occurring in our world are amorphous. Although the field is diverse and complex, this three-volume set covers the vast majority of the important concepts needed to understand these materials and their principal practical applications. One volume discusses the most important subset of amorphous insulators, namely oxide glasses; the other two volumes discuss the most important subsets of amorphous semiconductors, namely tetrahedrally coordinated amorphous semiconductors and amorphous and glassy chalcogenides. Together these three volumes provide a comprehensive set of theoretical concepts and practical information needed to become conversant in the field of amorphous materials. They are suitable for advanced graduate students, postdoctoral research associates, and researchers wishing to change fields or sub-fields.
The topics covered in these three volumes include (1) concepts for understanding the structures of amorphous materials, (2) techniques to characterize the structural, electronic, and optical properties of amorphous materials, (3) the roles of defects in affecting the electronic and optical properties of amorphous materials, and (4) the concepts for understanding practical devices and other applications of amorphous materials. Applications discussed in these volumes include transistors, solar cells, displays, bolometers, fibers, non-volatile memories, vidicons, photoresists, and optical
Key Features:
o This three-volume set is unique in covering all essential aspects needed in the vast field of amorphous materials
o The editors of these volumes and the authors of each chapter are world recognized experts in their respective fields
Volume 1: Structure, Properties, Modeling and Applications of Amorphous Chalcogenides (Alexander V Kolobov & Koichi Shimakawa): Preface by Editor-in-Chief; Preface by Volume Editors; Chalcogenide Glasses: Glass Transition and Relaxation of Chalcogenides: Insight from Structure, Topology, and Rigidity (Matthieu Micoulaut); Structure and Defects (Koichi Shimakawa and Sandor Kugler); Modeling of Glasses: Electronic Conduction Mechanisms in GeSe₃:Ag and Al₂O₃:Cu (K Subedi, Kiran Prasai, and D A Drabold); Chalcogenide Glassy Semiconductors: History of Discovery and Research (Konstantin D Tsendin and Nikita A Bogoslovskiy); Electronic Structures (Yukihiro Tanaka); Optical Properties (Yukihiro Tanaka); Electrical Transport Properties (Koichi Shimakawa); Ionic Conductivity and Tracer Diffusion in Glassy Chalcogenides (I Alekseev, D Fontanari, A Sokolov, M Bokova, M Kassem, and E Bychkov); Athermal Photoelectronic Effects in Non-Crystalline Chalcogenides: Current Status and Beyond (Spyros N Yannopoulos); Phase-Change Alloys: Phase-Change Alloy: Structural Aspects (P Fons and A V Kolobov); Drift Phenomena in Phase Change Memories (Daniele Ielmini); Crystallization of Phase-Change Chalcogenides (Jiri Orava, Tae Hoon Lee, Stephen R Elliott, and A Lindsay Greer); Pressure-Induced Amorphization (M Krbal); Applications: Optical Non-linearities in Chalcogenide Glasses and Their Applications (A Zakery and SR Elliott); Phase Change Material Photonics (Robert E Simpson and Tun Cao); X-Ray Photoconductivity of Stabilized Amorphous Selenium (Safa Kasap); High-Gain Avalanche Rushing Pickup Tube (Kenkichi Tanioka); Metal-Doped Chalcogenides (Tomas Wagner, Bo Zhan, Max Fraenkl, Silvya Valkova, Radim Vala, and Tomas Hrbek); High-Resolution Photoresists (Karel Palka, Stanislav Slang, and Miroslav Vlcek); Phase Change Materials for Optical Disc and Display Applications (Yuta Saito, Kotaro Makino, and Paul Fons); Non-Volatile Memory (Paolo Fantini); Volume 2: Structure, Properties and Applications of Oxide Glasses (Ivar E Reimanis): Preface by Editor-in-Chief; Preface by Volume Editors; Introduction to Oxide Glasses (Ivar Reimanis); Characterization of Glasses (Mario Affatigato); Nuclear Magnetic Resonance Spectroscopy of Oxide Glasses (Randall E Youngman); Contact Damage in Oxide Glass (Timothy M Gross); Aqueous Corrosion of Glass (Dien Ngo and Seong H Kim); Electrical Properties of Glass (Ciao Barco Bragatto); Glass Fiber Processing and Applications (Elam A Leed); Volume 3: Structure, Properties, and Applications of Tetrahedrally Bonded Thin-Film Amorphous Semiconductors (Nikolas J Podraza & Robert W Collins): Preface by Editor-in-Chief; Preface by Volume Editors; Film Growth Evolution and Structure (Nikolas J Podraza and Robert W Collins); Structure, Defects and Hydrogen in Tetrahedral Amorphous Materials: a-Si and nc-Si (Kristin K Rabosky); Infrared Optical Properties: Hydrogen Bonding8and Stability (Michael Stuckelberger, Jimmy Melskens, and Nikolas J Podraza); Near-Infrared to Ultraviolet Optical Response and the Absorption Onset: Parametric Representations (Robert W Collins, Prakash Koirala, and Nikolas J Podraza); Structure, Bonding, and Temperature Effects on the Dielectric Function and Bandgap (Dipendra Adhikari, Robert W Collins, and Nikolas J Podraza); Optoelectronic Properties: Carrier Transport, Recombination, and Stability (Lihong (Heidi) Jiao and Joshua M Pearce); Growth and Properties of Tetrahedrally-Bonded Thin-Film Amorphous Silicon Alloys (Nikolas J Podraza and Robert W Collins); Materials and Device Characterization by Optical Probes (Prakash Koirala, Jason A Stoke, Nikolas J Podraza, and Robert W Collins); Application Amorphous and Nanocrystalline Silicon in Solar Cells (Baojie Yan); Amorphous Silicon Microbolometers for IR Imaging (A J Syllaios, V C Lopes, C L Littler, and K Shrestha);
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