The synchronization of chaotic semiconductor lasers with optical feedback is studied numerically in a one-way coupling configuration, in which a small amount of the intensity of one laser (master laser) is injected coherently into the other (slave laser). A regime of anticipated synchronization is found, in which the intensity of the slave laser is synchronized to the future chaotic intensity of the master laser. Anticipation is robust to small noise and parameter mismatches, but in this case the synchronization is not complete. It is also shown that anticipated synchronization occurs in coupled time-delay systems, when the coupling has a delay that is less than the delay of the systems.Peer Reviewe
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
Abstract—Semiconductor lasers provide an excellent oppor-tunity for communication using chaotic wave...
Abstract—Mutually coupled oscillators are currently of great interest because of the important insig...
The synchronization of chaotic semiconductor lasers with optical feedback is studied numerically in ...
Abstract—Numerical studies for anticipating chaos syn-chronization in semiconductor lasers with opti...
We numerically study the synchronization of two unidirectionally coupled single-mode semiconductor l...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
Abstract—Semiconductor lasers provide an excellent oppor-tunity for communication using chaotic wave...
Abstract—Mutually coupled oscillators are currently of great interest because of the important insig...
The synchronization of chaotic semiconductor lasers with optical feedback is studied numerically in ...
Abstract—Numerical studies for anticipating chaos syn-chronization in semiconductor lasers with opti...
We numerically study the synchronization of two unidirectionally coupled single-mode semiconductor l...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
International audienceWe numerically study the synchronization of two unidirectionally coupled singl...
Abstract—Semiconductor lasers provide an excellent oppor-tunity for communication using chaotic wave...
Abstract—Mutually coupled oscillators are currently of great interest because of the important insig...