Many complex dynamical systems in the real world, including ecological, climate, financial, and power-grid systems, often show critical transitions, or tipping points, in which the system's dynamics suddenly transit into a qualitatively different state. In mathematical models, tipping points happen as a control parameter gradually changes and crosses a certain threshold. Tipping elements in such systems may interact with each other as a network, and understanding the behavior of interacting tipping elements is a challenge because of the high dimensionality originating from the network. Here we develop a degree-based mean-field theory for a prototypical double-well system coupled on a network with the aim of understanding coupled tipping dyn...
Collective dynamics on small-world networks emerge in a broad range of systems with their spectra ch...
peer-reviewedMultistate dynamical processes on networks, where nodes can occupy one of a multitude o...
The study of the dynamics of large, complex networks is generally very hard. Analytical solutions ar...
In an ecosystem, environmental changes as a result of natural and human processes can cause some key...
Complex networked systems ranging from ecosystems and the climate to economic, social, and infrastru...
A simple model to study cooperation is the two-species symbiotic contact process (2SCP), in which tw...
Mean-field analysis is an important tool for understanding dynamics on complex networks. However, su...
abstract: Complex dynamical systems are the kind of systems with many interacting components that us...
We investigate the effect of degree correlation on a susceptible-infected-susceptible (SIS) model wi...
Mean-field analysis is an important tool for understanding dynamics on complex networks. However, su...
Tipping points occur in diverse systems in various disciplines such as ecology, climate science, eco...
We study the tipping point collective dynamics of an adaptive susceptible-infected-susceptible (SIS)...
Systems composed of many interacting dynamical networks—such as the human body with its biological n...
Many real-world complex systems, when hitting a tipping point, undergo irreversible sudden shifts th...
A large number of real networks show abrupt phase transition phenomena in response to environmental ...
Collective dynamics on small-world networks emerge in a broad range of systems with their spectra ch...
peer-reviewedMultistate dynamical processes on networks, where nodes can occupy one of a multitude o...
The study of the dynamics of large, complex networks is generally very hard. Analytical solutions ar...
In an ecosystem, environmental changes as a result of natural and human processes can cause some key...
Complex networked systems ranging from ecosystems and the climate to economic, social, and infrastru...
A simple model to study cooperation is the two-species symbiotic contact process (2SCP), in which tw...
Mean-field analysis is an important tool for understanding dynamics on complex networks. However, su...
abstract: Complex dynamical systems are the kind of systems with many interacting components that us...
We investigate the effect of degree correlation on a susceptible-infected-susceptible (SIS) model wi...
Mean-field analysis is an important tool for understanding dynamics on complex networks. However, su...
Tipping points occur in diverse systems in various disciplines such as ecology, climate science, eco...
We study the tipping point collective dynamics of an adaptive susceptible-infected-susceptible (SIS)...
Systems composed of many interacting dynamical networks—such as the human body with its biological n...
Many real-world complex systems, when hitting a tipping point, undergo irreversible sudden shifts th...
A large number of real networks show abrupt phase transition phenomena in response to environmental ...
Collective dynamics on small-world networks emerge in a broad range of systems with their spectra ch...
peer-reviewedMultistate dynamical processes on networks, where nodes can occupy one of a multitude o...
The study of the dynamics of large, complex networks is generally very hard. Analytical solutions ar...