Semiconducting Chalcogenide Glass Iii


Semiconducting Chalcogenide Glass Iii
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Semiconducting Chalcogenide Glass Iii


Semiconducting Chalcogenide Glass Iii
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Author : Robert Fairman
language : en
Publisher: Elsevier
Release Date : 2004-12-17

Semiconducting Chalcogenide Glass Iii written by Robert Fairman and has been published by Elsevier this book supported file pdf, txt, epub, kindle and other format this book has been release on 2004-12-17 with Science categories.


Chalcogenide glass is made up of many elements from the Chalcogenide group. The glass is transparent to infrared light and is useful as a semiconductor in many electronic devices. For example, chalcogenide glass fibers are a component of devices used to perform laser surgery. Semiconducting Chalcogenide Glass III: Applications of Chalcogenide Glasses is a comprehensive overview of designs of various chalcogenide glass devices are presented, including switches, phase inverters, voltage stabilizers, oscillators, indicators and display control circuits, memory devices, and sensors. A special chapter is devoted to chalcogenide glass applications in optical fibers. This collective monograph is intended to survey the current state of chalcogenide glass applications to facilitate further development. The first collective monograph written by Eastern European scientists covering electrical and optical properties of chalcogenide vitreous semiconductors (CVS) Contributions by B.G. Kolomiets, who discovered the properties of chalcogenide glass in 1955! Provides evidence and discussion by authors from opposing positions



Semiconducting Chalcogenide Glass Ii


Semiconducting Chalcogenide Glass Ii
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Author : Robert Fairman
language : en
Publisher: Elsevier
Release Date : 2004-12-17

Semiconducting Chalcogenide Glass Ii written by Robert Fairman and has been published by Elsevier this book supported file pdf, txt, epub, kindle and other format this book has been release on 2004-12-17 with Science categories.


Chalcogenide glass is made up of many elements from the Chalcogenide group. The glass is transparent to infrared light and is useful as a semiconductor in many electronic devices. For example, chalcogenide glass fibers are a component of devices used to perform laser surgery. The properties of chalcogenide glass result not only from their chemical composition and atomic structure, but also from the impact of numerous external factors. A comprehensive survey is presented of the properties of chalcogenide glass under various external impacts. Practical recommendations are presented for a wide range of applications. Part II is the second part of a three-volume work within the Semiconductors and Semimetals series. * The first collective monograph written by Eastern European scientists on the electrical and optical properties of chalcogenide vitreous semiconductors (CVS).* Contributions by B.G. Kolomiets, who discovered the properties of chalcogenide glass in 1955!* Provides objective evidence and discussion by authors from opposing positions.



Semiconducting Chalcogenide Glass Ii


Semiconducting Chalcogenide Glass Ii
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Author : Robert Fairman
language : en
Publisher: Academic Press
Release Date : 2005-01-11

Semiconducting Chalcogenide Glass Ii written by Robert Fairman and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2005-01-11 with Science categories.


Chalcogenide glass is made up of many elements from the Chalcogenide group. The glass is transparent to infrared light and is useful as a semiconductor in many electronic devices. For example, chalcogenide glass fibers are a component of devices used to perform laser surgery. The properties of chalcogenide glass result not only from their chemical composition and atomic structure, but also from the impact of numerous external factors. A comprehensive survey is presented of the properties of chalcogenide glass under various external impacts. Practical recommendations are presented for a wide range of applications. Part II is the second part of a three-volume work within the Semiconductors and Semimetals series. * The first collective monograph written by Eastern European scientists on the electrical and optical properties of chalcogenide vitreous semiconductors (CVS). * Contributions by B.G. Kolomiets, who discovered the properties of chalcogenide glass in 1955! * Provides objective evidence and discussion by authors from opposing positions.



Semiconductors And Semimetals


Semiconductors And Semimetals
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Author : Robert Fairman
language : en
Publisher:
Release Date : 2004

Semiconductors And Semimetals written by Robert Fairman and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2004 with Chalcogenides categories.




Semiconducting Chalcogenide Glass


Semiconducting Chalcogenide Glass
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Author :
language : en
Publisher:
Release Date : 2004

Semiconducting Chalcogenide Glass written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2004 with Chalcogenides categories.




Insulating And Semiconducting Glasses


Insulating And Semiconducting Glasses
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Author : P Boolchand
language : en
Publisher: World Scientific
Release Date : 2000-05-24

Insulating And Semiconducting Glasses written by P Boolchand and has been published by World Scientific this book supported file pdf, txt, epub, kindle and other format this book has been release on 2000-05-24 with Technology & Engineering categories.


This book reviews principal topical issues on the basic science of glasses and amorphous thin-films. It also includes select applications of these materials in current and evolving technologies, including optical recording, imaging, solar cells, battery technology and field-emission displays. The glass systems of interest include oxides, chalcogenides and chalcohalides of the group III, IV and V elements, as well as amorphous thin-films of the group IV elements. Glass formation in covalent melts can be understood in terms of new ideas based on constraint counting algorithms which have led to the fragile-strong classification and to the concept of rigidity transition. Vibrational excitations and characterization of the atomic scale structure at various length scales are addressed by an array of experimental probes, including X-ray and neutron scattering, Brillouin scattering, Raman scattering and infrared reflectance, solid state nuclear magnetic resonance, nuclear quadrupole resonance and Mössbauer spectroscopy. Chapters are also devoted to the physics of electronic transport in amorphous materials, to the physics of tunneling states in crystalline and amorphous solids, and the physics of light-induced effects in glasses. In addition, a chapter is devoted to the rapidly evolving field of numerical simulations of disordered systems by computer modeling. Each of these topics is discussed by experts who have made significant contributions to the field. The book can serve as a text for a graduate course in glass science. For an established researcher, it provides, in a concise form, a large body of experimental data on the basic materials research aspect of these fascinating materials. Contents:Glass Formation and the Nature of the Glass Transition (C A Angell)Dual Nature of Molecular Glass Transitions (J C Phillips)The Generic Phenomenology of Glass Formation (I Gutzow)The Structure and Rigidity of Network Glasses (M F Thorpe et al.)Glass Structure by Scattering Methods and Spectroscopy:X-Ray and Neutron Diffraction (A C Wright)Mössbauer Spectroscopy (P Boolchand)Nuclear Quadrupole Resonance (NQR) Studies of Glass Structure (P J Bray)Solid State NMR as a Structural Tool in Glass Science (H Eckert)Vibrational Excitations in Glasses:Inelastic Neutron Scattering (R L Cappelletti)Rigidity Transition and Lamb-Mössbauer Factors (P Boolchand)Raman Scattering (K Murase)Low Frequency Vibrational Excitations in Glasses by Brillouin and Raman Scattering (C Levelut)Tunneling Systems in Crystalline and Amorphous Solids (S Hunklinger & C Enss)Electronic Transport in Disordered Semiconductors (H Overhoff & P Thomas)Molecular Dynamic Simulations of Network Glasses (D A Drabold)Light-Induced Structural Changes in Glasses (H Fritzsche)Chalcohalide Glasses (J Lucas)Applications of Non-Crystalline Materials:Applications of Glasses, Amorphous and Disordered Materials (S Ovshinsky)Amorphous Chalcogenide Photoconductors in Imaging Technologies (S O Kasap & J A Rowlands)Real Time Optical Recording on Thin Films of Amorphous Semiconductors (M Mitkova) Diamond Based Field Emission Displays (J E Jaskie) Readership: Physicists, materials scientists, ceramists, chemists, electrical engineers, and mathematicians working with numerical and computational methods who have an interest in glass science. Keywords:Glass Transition;Nuclear Magnetic Resonance (NMR) Spectroscopy;Raman Scattering;Mossbauer Spectroscopy;Molecular Dynamic Simulations;Optical Recording;Brillouin Scattering;Intermediate Phases;Modulated Differential Scanning Calorimetry;Neutron Scattering



Glassy Semiconductors


Glassy Semiconductors
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Author : Z. Borisova
language : en
Publisher: Springer Science & Business Media
Release Date : 2013-03-09

Glassy Semiconductors written by Z. Borisova and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-03-09 with Science categories.


Research on glassy semiconductors continues to expand every year. This is evidenced by the ever-increasing number of articles devoted to glassy semiconductors and published in a great variety of periodicals. The time has come to systematize and generalize the abundant published experimental material. The first review of the experimental data on glass formation and the physicochemical and physical properties of chalcogenide glassy semi conductors was published by B. T. Kolorniets [1]. Glass formation in chalcogenide systems is the subject of a section in a monograph by Rawson [2]. In 1972 the Leningrad University published the author's books [3] dealing with the regularities of glass formation in cha1cogenide systems and containing a systematized exposition of some physicochemical properties of glassy cha1cogenide semiconductors. The monograph presented mainly results of research performed by the Semiconductor Chemistry Laboratory staff of the Leningrad University. These investigations were started at the initiative and under the dircction of Professor R. L. Myuller and wcre continued under the author's direction. The present monograph is a revised and substantially supplementcd version of the aforementioned publication. However, the extensive experimental material in the literature is far from completely presented. It contains mainly data on the research performed by the staff of the laboratory headed by the author. However, data obtained by other Soviet and foreign workers are represented to a greater degree in this book than in the preceding edition.



Amorphous Chalcogenide Semiconductors And Related Materials


Amorphous Chalcogenide Semiconductors And Related Materials
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Author : Keiji Tanaka
language : en
Publisher: Springer Science & Business Media
Release Date : 2011-05-24

Amorphous Chalcogenide Semiconductors And Related Materials written by Keiji Tanaka and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011-05-24 with Technology & Engineering categories.


"Amorphous Chalcogenide Semiconductors and Glasses" describes developments in the science and technology of this class of materials. This book offers an up-to-date treatment of chalcogenide glasses and amorphous semiconductors from basic principles to applications while providing the reader with the necessary theoretical background to understanding the material properties technology of this class of materials. This book offers an up-to-date treatment of chalcogenide glasses and amorphous semiconductors from basic principles to applications while providing the reader with the necessary theoretical background to understanding the material properties. Chalcogenides form a special class of materials, which have one or more of the elements from the chalcogen group, Group VI in the Periodic Table (S, Se. or Te) as a constituent; the chalcogen is mixed with other elements to form various "new" compounds and alloys. Chalcogenides are noncrystalline solids because their structure is "amorphous" or "glassy". Such structures have totally different properties than crystalline solids. Chalcogenide glasses have a number of very interesting and useful properties, which have been already exploited in the commercialization of new devices.



Semiconductor Nanowires Ii Properties And Applications


Semiconductor Nanowires Ii Properties And Applications
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Author :
language : en
Publisher: Academic Press
Release Date : 2016-01-11

Semiconductor Nanowires Ii Properties And Applications written by and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2016-01-11 with Science categories.


Semiconductor Nanowires: Part B, and Volume 94 in the Semiconductor and Semimetals series, focuses on semiconductor nanowires. Includes experts contributors who review the most important recent literature Contains a broad view, including examination of semiconductor nanowires



Defects In Semiconductors


Defects In Semiconductors
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Author :
language : en
Publisher: Academic Press
Release Date : 2015-06-08

Defects In Semiconductors written by and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2015-06-08 with Technology & Engineering categories.


This volume, number 91 in the Semiconductor and Semimetals series, focuses on defects in semiconductors. Defects in semiconductors help to explain several phenomena, from diffusion to getter, and to draw theories on materials' behavior in response to electrical or mechanical fields. The volume includes chapters focusing specifically on electron and proton irradiation of silicon, point defects in zinc oxide and gallium nitride, ion implantation defects and shallow junctions in silicon and germanium, and much more. It will help support students and scientists in their experimental and theoretical paths. Expert contributors Reviews of the most important recent literature Clear illustrations A broad view, including examination of defects in different semiconductors