activity
20242026
collaborators

6 papers

cond-mat.soft2026

Phase-Field Models for Particle-Stabilised Emulsions

Elisabeth C. Eij, Joost de Graaf, Martin F. Haase +1

Particle-stabilised emulsions are a cornerstone of soft matter science due to their broad application and fundamental relevance. Computer simulations provide key insights into the…

cond-mat.soft2026

The Geometry behind the Glass Transition and Frictional Jamming in Systems of Two-Dimensional Hard Disks

Joost de Graaf

The relation between dynamics and structure in systems of Brownian bidisperse 2D hard disks with arrested dynamics is examined using numerical simulations. Surprisingly, the suspen…

physics.bio-ph2025

Cell Competition Driven by Secreted Ligands: Modeling Liver Metastasis of Colorectal Cancer

Hossein Nemati, Saskia Jacoba Elisabeth Suijkerbuijk, Joost de Graaf

Cell competition in multicellular organisms has been shown to play a critical role during the development of organisms, cancer progression, and in the establishment and maintenance…

physics.flu-dyn2025

Projection-Based Solver for Viscoelastic Stokes Flow using FFTs

Georg Rempfer, Chengkai Zhu, Bart Stam +3

Understanding the flow of complex media is relevant for a wide range of research fields and industrial applications. Several numerical approaches exist by which approximate solutio…

physics.flu-dyn2025

Hydrodynamic Interactions in Particle Suspensions: A Perspective on Stokesian Dynamics

Kim William Torre, Joost de Graaf

Stokesian Dynamics (SD) is a numerical framework used for simulating hydrodynamic interactions in particle suspensions at low Reynolds number. It combines far-field approximations…

cond-mat.soft2024

The Cellular Potts Model on Disordered Lattices

Hossein Nemati, Joost de Graaf

The Cellular Potts model, also known as the Glazier-Graner-Hogeweg model, is a lattice-based approach by which biological tissues at the level of individual cells can be numericall…