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Nonlinear Spatio
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eBay-objectnummer:183934458507
Specificaties
- Objectstaat
- ISBN
- 9780521451864
- Subject Area
- Mathematics, Technology & Engineering, Science
- Publication Name
- Nonlinear Spatio-Temporal Dynamics and Chaos in Semiconductors
- Publisher
- Cambridge University Press
- Item Length
- 10.1 in
- Subject
- Chaotic Behavior in Systems, Electronics / Semiconductors, Physics / Mathematical & Computational, Physics / General, Mathematical Analysis
- Publication Year
- 2001
- Series
- Cambridge Nonlinear Science Ser.
- Type
- Textbook
- Format
- Hardcover
- Language
- English
- Item Height
- 1.3 in
- Item Weight
- 38.7 Oz
- Item Width
- 7.1 in
- Number of Pages
- 422 Pages
Over dit product
Product Identifiers
Publisher
Cambridge University Press
ISBN-10
0521451868
ISBN-13
9780521451864
eBay Product ID (ePID)
1702610
Product Key Features
Number of Pages
422 Pages
Language
English
Publication Name
Nonlinear Spatio-Temporal Dynamics and Chaos in Semiconductors
Subject
Chaotic Behavior in Systems, Electronics / Semiconductors, Physics / Mathematical & Computational, Physics / General, Mathematical Analysis
Publication Year
2001
Type
Textbook
Subject Area
Mathematics, Technology & Engineering, Science
Series
Cambridge Nonlinear Science Ser.
Format
Hardcover
Dimensions
Item Height
1.3 in
Item Weight
38.7 Oz
Item Length
10.1 in
Item Width
7.1 in
Additional Product Features
Intended Audience
Scholarly & Professional
LCCN
00-033701
Dewey Edition
21
Series Volume Number
Series Number 10
Illustrated
Yes
Dewey Decimal
537.6/226
Table Of Content
1. Semiconductors as continuous nonlinear dynamic systems; 2. Concepts of nonlinear charge transport in semiconductors; 3. Pattern formation and oscillatory instabilities in semiconductors; 4. Impact ionization induced impurity breakdown; 5. Nonlinear carrier dynamics in crossed electric and magnetic fields; 6. Stationary and oscillating domains in superlattices; 7. Spatio-temporal chaos.
Synopsis
This book brings together concepts from the important fields of semiconductor physics and nonlinear dynamics to examine transport phenomena in semiconductor systems. In doing so the wonders of nonlinearities, instabilities and chaos are revealed in a book that will be of great interest to semiconductor physicists and nonlinear scientists alike., Nonlinear transport phenomena are an increasingly important aspect of modern semiconductor research. Nonlinear Spatio-Temporal Dynamics and Chaos in Semiconductors deals with complex nonlinear dynamics, pattern formation, and chaotic behaviour in such systems. In doing so it bridges the gap between two well-established fields: the theory of dynamic systems, and nonlinear charge transport in semiconductors. This unified approach is used to consider important electronic transport instabilities. The initial chapters lay a general framework for the theoretical description of nonlinear self-organized spatio-temporal patterns, like current filaments, field domains, fronts, and analysis of their stability. Later chapters consider important model systems in detail: impact ionization induced impurity breakdown, Hall instabilities, superlattices, and low-dimensional structures. State-of-the-art results include chaos control, spatio-temporal chaos, multistability, pattern selection, activator-inhibitor kinetics, and global coupling, linking fundamental issues to electronic device applications. This book will be of great value to semiconductor physicists and nonlinear scientists alike., Nonlinear transport phenomena are an increasingly important aspect of modern semiconductor research. This volume deals with complex nonlinear dynamics, pattern formation, and chaotic behavior in such systems. It bridges the gap between two well-established fields: the theory of dynamic systems and nonlinear charge transport in semiconductors. This unified approach helps reveal important electronic transport instabilities. The initial chapters lay a general framework for the theoretical description of nonlinear self-organized spatio-temporal patterns, such as current filaments, field domains, fronts, and analysis of their stability. Later chapters consider important model systems in detail: impact ionization induced impurity breakdown, Hall instabilities, superlattices, and low-dimensional structures. State-of-the-art results include chaos control, spatio-temporal chaos, multistability, pattern selection, activator-inhibitor kinetics, and global coupling, linking fundamental issues to electronic device applications. This book will be of great value to semiconductor physicists and nonlinear scientists alike.
LC Classification Number
QC611.6.H67 S46 2000
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