activity
20242026
collaborators

8 papers

physics.soc-ph2026

Topology and higher-order global synchronization on directed and hollow simplicial and cell complexes

Runyue Wang, Timoteo Carletti, Ginestra Bianconi

Higher-order networks encode the many-body interactions of complex systems ranging from the brain to biological transportation networks. Simplicial and cell complexes are ideal hig…

nlin.AO2026

Minimal branching and fusion morphogenesis approaches biological multi-objective optimality

Maxime Lucas, Corentin Bisot, Giovanni Petri +2

Many biological networks grow by elongation of filaments that can branch and fuse -- typical examples include fungal mycelium or slime mold. These networks must simultaneously perf…

nlin.PS2025

Synchronization of nonlinearly coupled Stuart-Landau oscillators on networks

Wilfried Segnou, Riccardo Muolo, Marie Dorchain +2

The dynamics of coupled Stuart-Landau oscillators play a central role in the study of synchronization phenomena. Previous works have focused on linearly coupled oscillators in diff…

nlin.AO2025

A two-dimensional swarmalator model with higher-order interactions

Md Sayeed Anwar, Gourab Kumar Sar, Timoteo Carletti +1

We study a simple two-dimensional swarmalator model that incorporates higher-order phase interactions, uncovering a diverse range of collective states. The latter include spatially…

nlin.AO2024

A strategy to control synchronized dynamics in swarmalator systems

Gourab Kumar Sar, Md Sayeed Anwar, Martin Moriamé +2

Synchronization forms the basis of many coordination phenomena in natural systems, enabling them to function cohesively and support their fundamental operations. However, there are…

cond-mat.stat-mech2024

Global Topological Dirac Synchronization

Timoteo Carletti, Lorenzo Giambagli, Riccardo Muolo +1

Synchronization is a fundamental dynamical state of interacting oscillators, observed in natural biological rhythms and in the brain. Global synchronization which occurs when non-l…