arXiv · 1905.01115
Chimera states in small disordered optomechanical arrays
Abstract
Synchronization of weakly-coupled non-linear oscillators is a ubiquitous phenomenon that has been observed across the natural sciences. We study the dynamics of optomechanical arrays - networks of mechanically compliant structures that interact with the radiation pressure force - which are driven to self-oscillation. These systems offer a convenient platform to study synchronization phenomena and have potential technological applications. We demonstrate that this system supports the existence of long-lived chimera states, where parts of the array synchronize whilst others do not. Through a combined numerical and analytical analysis we show that these chimera states can only emerge in the presence of disorder.
Explore related subjects
Keep this discovery
Karl Pelka, Vittorio Peano, André Xuereb. 2019-05-03. Chimera states in small disordered optomechanical arrays. https://doi.org/10.1103/physrevresearch.2.013201
Cite the original work for its findings. Save a collection to share your selection of sources.