International audienceThis paper studies the effect of independent additive noise on the synchronous dynamics of large populations of globally coupled maps. Our analysis is complementary to the approach taken by Teramae and Kuramoto [J. Teramae, Y. Kuramoto, Strong desynchronizing effects of weak noise in globally coupled systems, Phys. Rev. E 63 (2001) 036210] who pointed out the anomalous scaling properties preceding the loss of coherence. We focus on the macroscopic dynamics that remains deterministic at any noise level and differs from the microscopic one. Using properly defined order parameters, an analytical approach is proposed for describing the collective dynamics in terms of an approximate low-dimensional system. The systematic de...
We consider the effect of microscopic external noise on the collective motion of a globally coupled ...
We study the interplay of global attractive coupling and individual noise in a system of identical a...
ACKNOWLEDGMENT This work has been financially supported by the European Union’s Horizon 2020 researc...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
We consider the effect of microscopic external noise on the collective motion of a globally coupled ...
We consider the effect of microscopic external noise on the collective motion of a globally coupled ...
We consider the effect of microscopic external noise on the collective motion of a globally coupled ...
We consider the effect of microscopic external noise on the collective motion of a globally coupled ...
We study the interplay of global attractive coupling and individual noise in a system of identical a...
ACKNOWLEDGMENT This work has been financially supported by the European Union’s Horizon 2020 researc...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
International audienceThis paper studies the effect of independent additive noise on the synchronous...
We consider the effect of microscopic external noise on the collective motion of a globally coupled ...
We consider the effect of microscopic external noise on the collective motion of a globally coupled ...
We consider the effect of microscopic external noise on the collective motion of a globally coupled ...
We consider the effect of microscopic external noise on the collective motion of a globally coupled ...
We study the interplay of global attractive coupling and individual noise in a system of identical a...
ACKNOWLEDGMENT This work has been financially supported by the European Union’s Horizon 2020 researc...