Physical and biological systems are often involved with coupled processes of different time scales. In the system with electronic and atomic motions, for example, the interplay between the atomic motion along the same energy landscape and the electronic hopping between different landscapes is critical: the system behavior largely depends on whether the intralandscape motion is slower (adiabatic) or faster (nonadiabatic) than the interlandscape hopping. For general nonequilibrium dynamics where Hamiltonian or energy function is unknown a priori, the challenge is how to extend the concepts of the intra-and interlandscape dynamics. In this paper we establish a theoretical framework for describing global nonequilibrium and nonadiabatic complex ...
Spatially extended systems are widely encountered in physics, chemistry, and biology for studying ma...
The brainmap project aims tomap out the neuron connections of the human brain. Even with all of the ...
The driving force of the dynamical system can be decomposed into the gradient of a potential landsca...
We developed a general framework to quantify three key ingredients for dynamics of nonequilibrium sy...
We develop a theoretical framework for exploring global natures of non-equilibrium dynamical systems...
We established a theoretical framework for studying nonequilibrium networks with two distinct nature...
The global stability of dynamical systems and networks is still challenging to study. We developed a...
We established the potential and flux landscape theory for evolution. We found explicitly the conven...
We established a potential and flux field landscape theory to quantify the global stability and dyna...
In this review, we summarize our recent efforts in exploring the non-equilibrium potential and flux ...
The species in ecosystems are mutually interacting and self sustainable stable for a certain period....
AbstractWe quantify the potential landscape to determine the global stability and coherence of biolo...
Using fission yeast cell cycle as an example, we uncovered that the non-equilibrium network dynamics...
The species in ecosystems are mutually interacting and self sustainable stable for a certain period....
We developed a potential flux landscape theory to investigate the dynamics and the global stability ...
Spatially extended systems are widely encountered in physics, chemistry, and biology for studying ma...
The brainmap project aims tomap out the neuron connections of the human brain. Even with all of the ...
The driving force of the dynamical system can be decomposed into the gradient of a potential landsca...
We developed a general framework to quantify three key ingredients for dynamics of nonequilibrium sy...
We develop a theoretical framework for exploring global natures of non-equilibrium dynamical systems...
We established a theoretical framework for studying nonequilibrium networks with two distinct nature...
The global stability of dynamical systems and networks is still challenging to study. We developed a...
We established the potential and flux landscape theory for evolution. We found explicitly the conven...
We established a potential and flux field landscape theory to quantify the global stability and dyna...
In this review, we summarize our recent efforts in exploring the non-equilibrium potential and flux ...
The species in ecosystems are mutually interacting and self sustainable stable for a certain period....
AbstractWe quantify the potential landscape to determine the global stability and coherence of biolo...
Using fission yeast cell cycle as an example, we uncovered that the non-equilibrium network dynamics...
The species in ecosystems are mutually interacting and self sustainable stable for a certain period....
We developed a potential flux landscape theory to investigate the dynamics and the global stability ...
Spatially extended systems are widely encountered in physics, chemistry, and biology for studying ma...
The brainmap project aims tomap out the neuron connections of the human brain. Even with all of the ...
The driving force of the dynamical system can be decomposed into the gradient of a potential landsca...