Stochastic persistency of nematic alignment state for the Justh–Krishnaprasad model with additive white noises
DOI10.1142/S0218202520400035zbMath1470.70030OpenAlexW3005442402MaRDI QIDQ5128705
Hui Yu, Seung-Yeal Ha, Woojoo Shim, Dongnam Ko
Publication date: 23 October 2020
Published in: Mathematical Models and Methods in Applied Sciences (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1142/s0218202520400035
Stochastic ordinary differential equations (aspects of stochastic analysis) (60H10) Stability for nonlinear problems in mechanics (70K20) Random vibrations in mechanics of particles and systems (70L05) Asymptotic properties of solutions to ordinary differential equations (34D05)
Related Items (6)
Cites Work
- Unnamed Item
- Emergence of phase-locked states for the Kuramoto model in a large coupling regime
- Asymptotic formation and orbital stability of phase-locked states for the Kuramoto model
- Synchronization in complex networks of phase oscillators: a survey
- Collective synchronization of classical and quantum oscillators
- A continuum model for nematic alignment of self-propelled particles
- A new model for self-organized dynamics and its flocking behavior
- Chemical oscillations, waves, and turbulence
- Large scale dynamics of the persistent turning Walker model of fish behavior
- From particle to kinetic and hydrodynamic descriptions of flocking
- A simple proof of the Cucker-Smale flocking dynamics and mean-field limit
- Equilibria and steering laws for planar formations
- ON THE MATHEMATICAL THEORY OF THE DYNAMICS OF SWARMS VIEWED AS COMPLEX SYSTEMS
- Emergent behaviour of a generalized Viscek-type flocking model
- Toward a mathematical theory of behavioral-social dynamics for pedestrian crowds
- Emergence of bi-cluster flocking for agent-based models with unit speed constraint
- Consensus and Cooperation in Networked Multi-Agent Systems
- Challenges in active particles methods: Theory and applications
- An age-structured continuum model for myxobacteria
- Swarming Patterns in a Two-Dimensional Kinematic Model for Biological Groups
- Vehicular traffic, crowds, and swarms: From kinetic theory and multiscale methods to applications and research perspectives
- On Exponential Synchronization of Kuramoto Oscillators
- Noise-Induced Phenomena in Slow-Fast Dynamical Systems
- Coordination of groups of mobile autonomous agents using nearest neighbor rules
- Emergent Behavior in Flocks
- A quest toward a mathematical theory of the dynamics of swarms
- On the Critical Coupling for Kuramoto Oscillators
- Stochastic differential equations. An introduction with applications.
This page was built for publication: Stochastic persistency of nematic alignment state for the Justh–Krishnaprasad model with additive white noises