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(Ebook) Amorphous Semiconductors 1st Edition by Sandor Kugler, Koichi Shimakawa ISBN 1139904469 9781139904469

  • SKU: EBN-5742776
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Authors:Kugler, Sándor; Shimakawa, Koichi
Pages:147 pages.
Year:2015
Editon:Online-Ausg
Publisher:Cambridge University Press
Language:english
File Size:6.65 MB
Format:pdf
ISBNS:9781139904469, 9781139906401, 1139904469, 1139906402
Categories: Ebooks

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(Ebook) Amorphous Semiconductors 1st Edition by Sandor Kugler, Koichi Shimakawa ISBN 1139904469 9781139904469

(Ebook) Amorphous Semiconductors 1st Edition by Sandor Kugler, Koichi Shimakawa - Ebook PDF Instant Download/Delivery: 1139904469, 9781139904469
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Product details:

ISBN 10: 1139904469 
ISBN 13: 9781139904469
Author: Sandor Kugler, Koichi Shimakawa

Amorphous semiconductors are subtances in the amorphous solid state that have the properties of a semiconductor and which are either covalent or tetrahedrally bonded amorphous semiconductors or chelcogenide glasses. Developed from both a theoretical and experimental viewpoint Deals with, amongst others, preparation techniques, structural, optical and electronic properties, and light induced phenomena Explores different types of amorphous semiconductors including amorphous silicon, amorphous semiconducting oxides and chalcogenide glasses Applications include solar cells, thin film transistors, sensors, optical memory devices and flat screen devices including televisions

(Ebook) Amorphous Semiconductors 1st Table of contents:

1 Introduction
1.1 General Aspects of Amorphous Semiconductors
1.2 Chalcogenide Glasses
1.3 Applications of Amorphous Semiconductors
References
2 Preparation Techniques
2.1 Growth of a‐Si:H Films
2.2 Growth of Amorphous Chalcogenides
References
3 Structural Properties of Amorphous Silicon and Amorphous Chalcogenides
3.1 General Aspects
3.2 Optical Spectroscopy
3.3 Neutron Diffraction
3.4 Computer Simulations
References
4 Electronic Structure of Amorphous Semiconductors
4.1 Bonding Structures
4.2 Electronic Structure of Amorphous Semiconductors
4.3 Fermi Energy of Amorphous Semiconductors
4.4 Differences between Amorphous and Crystalline Semiconductors
4.5 Charge Distribution in Pure Amorphous Semiconductors
4.6 Density of States in Pure Amorphous Semiconductors
4.7 Dangling Bonds
4.8 Doping
References
5 Electronic and Optical Properties of Amorphous Silicon
5.1 Introduction
5.2 Band Tails and Structural Defects
5.3 Recombination Processes
5.4 Electrical Properties
5.5 Optical Properties
5.6 Electron Magnetic Resonance and Spin‐Dependent Properties
5.7 Light‐Induced Phenomena and Light‐Induced Defect Creation
References
6 Electronic and Optical Properties of Amorphous Chalcogenides
6.1 Historical Overview of Chalcogenide Glasses
6.2 Basic Glass Science
6.3 Electrical Properties
6.4 Optical Properties
6.5 The Nature of Defects, and Defect Spectroscopy
6.6 Light‐Induced Effects in Chalcogenides
References
7 Other Amorphous Material Systems
7.1 Amorphous Carbon and Related Materials
7.2 Amorphous Oxide Semiconductors
7.3 Metal‐Containing Amorphous Chalcogenides
References
8 Applications
8.1 Devices Using a‐Si:H
8.2 Devices Using a‐Chs

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Tags: Sandor Kugler, Koichi Shimakawa, Amorphous, Semiconductors

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