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Capacitance Spectroscopy of Semiconductors
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Capacitance Spectroscopy of Semiconductors

Book Details

Format Hardback or Cased Book
ISBN-10 9814774545
ISBN-13 9789814774543
Publisher Pan Stanford Publishing Pte Ltd
Imprint Pan Stanford Publishing Pte Ltd
Country of Manufacture SG
Country of Publication GB
Publication Date Jun 21st, 2018
Print length 460 Pages
Weight 1,054 grams
Dimensions 15.80 x 23.50 x 3.10 cms
Ksh 27,700.00
Werezi Extended Catalogue 0 in stock

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Capacitance spectroscopy refers to techniques for characterizing the electrical properties of semiconductor materials, junctions, and interfaces, all from the dependence of device capacitance on frequency, time, temperature, and electric potential. This book includes 15 chapters written by world-recognized, leading experts in the field, in academia, national institutions, and industry, subdivided into four sections: Physics, Instrumentation, Applications, and Emerging Techniques.

Capacitance spectroscopy refers to techniques for characterizing the electrical properties of semiconductor materials, junctions, and interfaces, all from the dependence of device capacitance on frequency, time, temperature, and electric potential. This book includes 15 chapters written by world-recognized, leading experts in the field, academia, national institutions, and industry, divided into four sections: Physics, Instrumentation, Applications, and Emerging Techniques. The first section establishes the fundamental framework relating capacitance and its allied concepts of conductance, admittance, and impedance to the electrical and optical properties of semiconductors. The second section reviews the electronic principles of capacitance measurements used by commercial products, as well as custom apparatus. The third section details the implementation in various scientific fields and industries, such as photovoltaics and electronic and optoelectronic devices. The last section presents the latest advances in capacitance-based electrical characterization aimed at reaching nanometer-scale resolution.


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