Buch, Englisch, 331 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 751 g
Buch, Englisch, 331 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 751 g
Reihe: Springer Series in Solid-State Sciences
ISBN: 978-3-642-02235-7
Verlag: Springer
This short Introduction into Space Charge E?ects in Semiconductors is designed for teaching the basics to undergraduates and show how space charges are created in semiconductors and what e?ect they have on the el- tric?eldandthe energybanddistributioninsuchmaterials,andconsequently on the current–voltage characteristics in semiconducting devices. Such space charge e?ects were described previously in numerous books, fromtheclassicsofSpenkeandShockleytothemorerecentonesofSeegerand others.Butmanymoredetailedinformationwereonlyavailableintheoriginal literatureandsomeofthemnotatall.Itseemstobeimportanttocollectallin a comprehensive Text that can be presented to students in Physics, Electrical Engineering, and Material Science to create the fundamental knowledge that is now essential for further development of more sophisticated semiconductor devices and solar cells. This book will go through every aspect of space charge e?ects and - scribe them from simple elementaries to the basics of semiconductor devices, systematically and in progressing detail. For simplicity we have chosen this description for a one-dimensional se- conductorthatpermitsasimpledemonstrationoftheresultsgraphicallywi- out requiring sometimes confusing perspective rendering. In order to clarify the principles involved, the book starts with a hy- thetical model, by assuming simple space charge distributions and deriving their e?ects on ?eld and potential distributions, using the Poisson equation. Itemphasizestheimportantsignrelationsoftheinterreactingvariables,space charge, ?eld, and potential (band edges). It then expands into simple semiconductor models that contain an abrupt nn-junction and gives an example of important space chargelimited currents, + as observed in nn -junctions.
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Weitere Infos & Material
Space Charges in Insulators.- Creation of Space-Charge Regions in Solids.- The Schottky Barrier.- Minority Carriers in Barriers.- Minority Carrier Currents.- Schottky Barrier in Two-Carrier Model.- pn-Homojunctions.- The Photovoltaic Effect.- The Schottky Barrier Photodiode.- The pn-Junction with Light.- The Heterojunction with Light.