The synchronization of two unidirectionally coupled multimode semiconductor lasers was reported in the feedback/injection configuration. The transmitter was subjected to a weak-to-moderate optical feedback. Multimode chaotic output exhibited antiphase dynamics and multiple coexisting attractors. Results showed that the antiphase dynamics eliminated the need for modal output synchronization. The possibility of synchronization collapsed for identical lasers operating with identical or different parameters.SCOPUS: ar.jinfo:eu-repo/semantics/publishe
Abstract—Semiconductor lasers provide an excellent oppor-tunity for communication using chaotic wave...
In this Letter we numerically investigate the dynamics of a system of two coupled chaotic multimode ...
International audienceWe analyze theoretically the effect of polarization mode competition on the sy...
We numerically study the synchronization of two unidirectionally coupled single-mode semiconductor l...
International audienceWe study numerically two distant unidirectionally coupled single-mode semicond...
[出版社版]We experimentally observe synchronization of two semiconductor lasers commonly driven by a cha...
The synchronization of chaotic semiconductor lasers with optical feedback is studied numerically in ...
12 pages, 7 figures.-- Communication presented at: Physics and Simulation of Optoelectronic Devices ...
Abstract—Mutually coupled oscillators are currently of great interest because of the important insig...
3 pages, 2 figures.We study the synchronization of two unidirectionally coupled single-mode external...
Abstract—Numerical studies for anticipating chaos syn-chronization in semiconductor lasers with opti...
Synchronization and antiphase dynamics of selectively coupled multimode semiconductor lasers is exam...
We analyze unidirectionally coupled semiconductor lasers in the feedback/injection scheme to determi...
We discuss experimentally and numerically the dynamical behavior of a novel integrated semiconductor...
Abstract—Semiconductor lasers provide an excellent oppor-tunity for communication using chaotic wave...
In this Letter we numerically investigate the dynamics of a system of two coupled chaotic multimode ...
International audienceWe analyze theoretically the effect of polarization mode competition on the sy...
We numerically study the synchronization of two unidirectionally coupled single-mode semiconductor l...
International audienceWe study numerically two distant unidirectionally coupled single-mode semicond...
[出版社版]We experimentally observe synchronization of two semiconductor lasers commonly driven by a cha...
The synchronization of chaotic semiconductor lasers with optical feedback is studied numerically in ...
12 pages, 7 figures.-- Communication presented at: Physics and Simulation of Optoelectronic Devices ...
Abstract—Mutually coupled oscillators are currently of great interest because of the important insig...
3 pages, 2 figures.We study the synchronization of two unidirectionally coupled single-mode external...
Abstract—Numerical studies for anticipating chaos syn-chronization in semiconductor lasers with opti...
Synchronization and antiphase dynamics of selectively coupled multimode semiconductor lasers is exam...
We analyze unidirectionally coupled semiconductor lasers in the feedback/injection scheme to determi...
We discuss experimentally and numerically the dynamical behavior of a novel integrated semiconductor...
Abstract—Semiconductor lasers provide an excellent oppor-tunity for communication using chaotic wave...
In this Letter we numerically investigate the dynamics of a system of two coupled chaotic multimode ...
International audienceWe analyze theoretically the effect of polarization mode competition on the sy...