Research

How soft and living matter organises itself

From self-assembly and phase behaviour to multivalent interactions in living systems.

We combine theory, simulation and statistical physics to connect microscopic interactions with the behaviour of soft, condensed and biological matter.

Theory

[Analytical models of interactions and collective behaviour.]

Simulation

[Molecular dynamics, Monte Carlo and coarse-grained models.]

Statistical physics

[From microscopic interactions to macroscopic behaviour.]

What we work on

[Figure / simulation snapshot]
Theme 1

Self-assembly & phase behaviour

[2–3 sentences: how building blocks such as colloids or macromolecules organise into ordered structures, and which phases emerge.]

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[Figure / simulation snapshot]
Theme 2

Multivalent interactions in biological systems

[2–3 sentences: how many weak bonds combine into selective binding, and what that means for biological recognition.]

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[Figure / simulation snapshot]
Theme 3

Colloidal interactions & many-body effects

[2–3 sentences: effective interactions between colloidal particles, polarisation and many-body contributions beyond pairwise models.]

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[Figure / simulation snapshot]
Theme 4

Active & biological matter

[2–3 sentences: e.g. bacterial motility and collective motion of self-propelled particles.]

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We work together with