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Nonlinear Dynamics and Chaos in Semiconductors (Condensed Matter Physics)

By: K Aoki (Author)

Out of stock

Ksh 76,000.00

Format: Hardback or Cased Book

ISBN-10: 0750305142

ISBN-13: 9780750305143

Collection / Series: Condensed Matter Physics

Collection Type: Publisher collection

Publisher: Taylor & Francis Ltd

Imprint: Institute of Physics Publishing

Country of Manufacture: GB

Country of Publication: GB

Publication Date: Dec 7th, 2000

Publication Status: Active

Product extent: 592 Pages

Weight: 929.00 grams

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Concentrates on specific physical and experimental situations in semiconductors as well as examines how to use chaos theory to explain semiconductor phenomena. This work offers an account of the research on non-linear effects in semiconductor physics.
The field of nonlinear dynamics and low-dimensional chaos has developed rapidly over the past twenty years. The principal advances have been in theoretical aspects but more recent applications in a wide variety of the sciences have been made. Nonlinear Dynamics and Chaos in Semiconductors is the first book to concentrate on specific physical and experimental situations in semiconductors as well as examine how to use chaos theory to explain semiconductor phenomena.

Written by a well-respected researcher of chaos in semiconductors, Nonlinear Dynamics and Chaos in Semiconductors provides a rich and detailed account of progress in research on nonlinear effects in semiconductor physics. Discussing both theory and experiment, the author shows how this powerful combination has lead to real progress with difficult nonlinear problems in this technologically important field. Nonlinear carrier dynamics, caused by low-temperature impact ionization avalanche of impurities in extrinsic semiconductors, and the emergence of intractable chaos are treated in detail. The book explores impact ionization models, linear stability analysis, bifurcation theory, fractal dimensions, and various analytical methods in chaos theory. It also describes spatial and spatiotemporal evolution of the current density filament formed by the impact ionization avalanche.

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