Synchronization in disordered oscillatory media: a nonequilibrium phase transition for driven-dissipative bosons
arXiv:2101.05776 · doi:10.1103/PhysRevResearch.3.043092
Abstract
We show that a lattice of phase oscillators with random natural frequencies, described by a generalization of the nearest-neighbor Kuramoto model with an additional cosine coupling term, undergoes a phase transition from a desynchronized to a synchronized state. This model may be derived from the complex Ginzburg-Landau equations describing a disordered lattice of driven-dissipative Bose-Einstein condensates of exciton polaritons. We derive phase diagrams that classify the desynchronized and synchronized states that exist in both one and two dimensions. This is achieved by outlining the connection of the oscillator model to the quantum description of localization of a particle in a random potential through a mapping to a modified Kardar-Parisi-Zhang equation. Our results indicate that long-range order in polariton condensates, and other systems of coupled oscillators, is not destroyed by randomness in their natural frequencies.
8 pages, 4 figures. V2: revised title, improvements to main text and additional references, additional details of calculation as Supplemental Material
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Cited by in corpus (8)
- Asynchronous Locking in Metamaterials of Fluids of Light and Sound
- Nonequilibrium criticality driven by Kardar-Parisi-Zhang fluctuations in the synchronization of oscillator lattices
- Kardar-Parisi-Zhang universality class in the synchronization of oscillator lattices with time-dependent noise
- Kardar-Parisi-Zhang fluctuations in the synchronization dynamics of limit-cycle oscillators
- Synchronization and spacetime vortices in one-dimensional driven-dissipative condensates and coupled oscillator models
- Analogue Spin Simulators: How to keep the Amplitude Homogeneous
- Influence of coupling symmetries and noise on the critical dynamics of synchronizing oscillator lattices
- Theory of Optomechanical Locking in Driven-Dissipative Coupled Polariton Condensates