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Introduction to space charge effects in semiconductors / Karl W. Böer.

By: Material type: TextTextPublisher number: 12654635Series: Springer series in solid-state sciences ; 160.Publication details: Heidelberg ; New York : Springer, c2010.Description: xiii, 331 p. : ill. ; 24 cmISBN:
  • 9783642022357 (hbk. : alk. paper)
  • 3642022359 (hbk. : alk. paper)
  • 9783642022364 (eISBN)
  • 3642022367 (eISBN)
Subject(s): DDC classification:
  • 537.6226 22
LOC classification:
  • QC611.6.O6 B645 2010
Other classification:
  • 530
  • 620
  • UP 1100
  • UP 2800
Online resources: Review: "This book is the most comprehensive one to describe the basics of space-charge effects in semiconductors, starting from basic principles to advanced application in semiconducting devices. It uses detailed analyses of the transport, Poisson, and continuity equations to demonstrate the behavior of the solution curves of the complete set of field and current distributions, along with quantitative descriptions of the relevant band models of typical pn-junction and Schottky barrier devices. It emphasizes the relevance to actual devices and sets these results apart from more simple models of networks of diodes and resistors. The book is especially important for people interested in detail analysis of solar cells and their efficiencies."-- back cover.
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Holdings
Item type Current library Call number Status Date due Barcode
General Books General Books CUTN Central Library Sciences 537.6226 (Browse shelf(Opens below)) Available 23633

Includes bibliographical references (p. [303]-316) and index.

"This book is the most comprehensive one to describe the basics of space-charge effects in semiconductors, starting from basic principles to advanced application in semiconducting devices. It uses detailed analyses of the transport, Poisson, and continuity equations to demonstrate the behavior of the solution curves of the complete set of field and current distributions, along with quantitative descriptions of the relevant band models of typical pn-junction and Schottky barrier devices. It emphasizes the relevance to actual devices and sets these results apart from more simple models of networks of diodes and resistors. The book is especially important for people interested in detail analysis of solar cells and their efficiencies."-- back cover.

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