Topological Kurmoto models and global synchronization. Credit: Nature physics (2025). Doi: 10.1038/s41567-024-02757-W

The high-order topological dynamics combines high-order interaction, topology, and non-lectured mobility that leads to new emerging events. These incidents encoded information that can dramatically change our understanding of complex systems such as brain and climate, and allow physics -induced new skilled AI algorithms. Credit: Queen Mary University of London
Citation: How the topology runs complexity in brain, climate and AI (2025, 19 February).
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