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Fradkov A.L. Cybernetical Physics: From Control of Chaos to Quantum Control

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Fradkov A.L. Cybernetical Physics: From Control of Chaos to Quantum Control
Berlin: Springer, 2007. - 247 p.
The control of complex systems is one of the most important aspects in dealing with systems exhibiting nonlinear behaviour or similar features that defy traditional control techniques. This specific subject is gradually becoming known as cybernetical physics, borrowing methods from both theoretical physics and control engineering.
This book is, perhaps, the first attempt to present a unified exposition of the subject and methodology of cybernetical physics as well as solutions to some of its problems. Emphasis of the book is on the examination of fundamental limits on energy transformation by means of control procedures in both conservative and dissipative systems. A survey of application in physics includes the control of chaos, synchronisation of coupled oscillators, pendulum chains, reactions in physical chemistry and of quantum systems such as the dissociation of diatomic molecules.
This book has been written having researchers from various backgrounds in physics, mathematics and engineering in mind and is thus also suitable as introduction to graduate students working on the understanding of a broad range of complex systems in the natural sciences.
Contents :
Front Matter
Introduction: Physics and Cybernetics
Subject and Methodology of Cybernetical Physics
Control of Conservative Systems
Control of Dissipative Systems
Controlled Synchronization
Control of Chaos...Pages 105-136
Control of Interconnected and Distributed Systems...Pages 137-159
Control of Molecular and Quantum Systems...Pages 161-171
Control Algorithms and Dynamics of Physical Systems...Pages 173-182
Examples...Pages 183-211
Conclusions: Looking into the Future...Pages 213-215
Back Matter...Pages 217-241
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