collaborators

6 papers

physics.comp-ph2026

GEMINI: Generalized Ensnarlment Measure from Incomplete-linkage of Network-network Interactions

Yu Tian, Chinmayi Subramanya, Carl D. Modes

Spatially embedded networks are central to many physical and biological systems, where geometry and connectivity jointly shape structure and function. Examples abound across the sc…

physics.bio-ph2026

Effective strains enable rapid wound closure in jellyfish after injury

Anne Materne, Zhiqi Shen, Chiara Sinigaglia +1

The jellyfish Clytia hemisphaerica possesses astounding regenerative capacities and is able to close even large wounds within a few hours. This rapid pace of wound closure raises t…

physics.soc-ph2026

Event-based spatiotemporal networks for modelling emergent phenomena in complex systems

Matthijs Romeijnders, Michiel van Boven, Francesco Corman +3

Complex systems display emergent phenomena that vary significantly across spatial and temporal scales. These variations originate from fine-grained system processes, yet arriving a…

physics.bio-ph2026

Programming Shapes with Competing Layered Patterns

Wan Yee Yau, Carl D. Modes

Studying shape changing thick surfaces induced by differential growth helps us understand morphogenesis in biology and offers opportunities for device design. While ideal 2D differ…

q-bio.QM2025

ToSkA: Topological Skeleton Analysis for Network-Based Shape Representation and Evaluation of Objects from Cells to Death Stars

Allyson Quinn Ryan, Johannes Soltwedel, Carl D. Modes

Shape analysis and classification are popular methods for biologists, biophysicists and mathematicians investigating relationships between object function and form. Classic shape d…

cond-mat.stat-mech2025

Non Equilibrium Transitions in a Polymer Replication Ensemble

Arthur Genthon, Carl D. Modes, Frank Jülicher +1

The fuel-driven process of replication in living systems generates distributions of copied entities with varying degrees of copying accuracy. Here we introduce a thermodynamically…