collaborators

6 papers

physics.soc-ph2026

Self-similarity of mobility networks

Ying-Yue Lyu, Xiao-Yong Yan, Bin Jia +3

Mobility systems of people and goods are inherently multi-scale, spanning levels of organization from individual cities to regions and nations. Understanding whether mobility netwo…

physics.ao-ph2026

Long-term prediction of ENSO with physics-guided Deep Echo State Networks

Zejing Zhang, Jun Meng, Zhongpu Qiu +9

The El Niño-Southern Oscillation (ENSO) is a dominant mode of interannual climate variability, yet the mechanisms limiting its long-lead predictability remain unclear. Here we dev…

physics.ao-ph2025

Tipping Points and Cascading Transitions: Methods, Principles, and Evidences

Sheng Fang, Ziyan Wang, Jürgen Kurths +1

This review synthesizes recent advancements in understanding tipping points and cascading transitions within the Earth system, framing them through the lens of nonlinear dynamics a…

math.DS2025

Delayed Interactions in Active Agents: Stability and Formations

Yu Wang, Andreas Amann, Jinde Cao +2

Active agents with time-delayed interactions arise naturally in various real-world systems, such as biological systems, transportation networks and robotic swarms. Such systems are…

nlin.AO2025

Tipping in an adaptive climate network model

Tom Bdolach, Jürgen Kurths, Serhiy Yanchuk

With rising global temperatures Earth's tipping elements are becoming increasingly more vulnerable to crossing their critical thresholds. The reaching of such tipping points does n…

physics.geo-ph2025

Is the atmospheric river operating at a self-organized criticality state?

Shang Wang, Jun Meng, Sheng Fang +4

Atmospheric rivers (ARs) are essential components of the global hydrological cycle, with profound implications for water resources, extreme weather events, and climate dynamics. Ye…