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History-dependent control of unstable periodic orbits
(American Physical Society, 1994-09)
We present a method of stabilizing unstable periodic orbits in systems whose natural time scales are on the order of or faster than the time it would take for the experimental implementation of the Ott-Grebogi-Yorke (OGY) ...
Period-doubling route to chaos in a semiconductor laser subject to optical injection
(American Institute of Physics, 1994-06-27)
Experimental measurements and a single-mode analysis of a quantum-well laser diode subject to strong optical injection are combined to demonstrate that the diode follows a period-doubling route to chaos. All laser parameters ...
Synchronization of chaotic diode resonators by occasional proportional feedback
(American Physical Society, 1994-03-14)
Synchronization of a pair of chaotic diode resonators has been experimentally achieved by applying a minute feedback signal to the amplitude of the drive voltage of a slave resonator. The signal is proportional to the ...
Using neural networks for controlling chaos
(The International Society for Optical Engineering (SPIE), 1994-03)
A feed-forward backpropagating neural network is trained to achieve and maintain control
of the unstable periodic orbits embedded in a chaotic attractor. The controlling algorithms
used for training the network are based ...