activity
20232026
collaborators

5 papers

physics.flu-dyn2026

Interface-dominated sliding compound drops

Dominik Thy, Jan Diekmann, Uwe Thiele

We investigate compound drops composed of two immiscible nonvolatile partially wetting liquids that slide down an inclined homogeneous smooth solid substrate based on a mesoscopic…

physics.flu-dyn2024

Mesoscopic hydrodynamic model for spreading, sliding and coarsening compound drops

Jan Diekmann, Uwe Thiele

We revisit the mesoscopic hydrodynamic description of the dynamics of sessile partially wetting compound drops, i.e., of drops that consist of two immiscible nonvolatile partially…

physics.flu-dyn2024

Drops of volatile binary mixtures on brush-covered substrates

Jan Diekmann, Uwe Thiele

We introduce a mesoscopic hydrodynamic model for drops of binary mixtures of volatile partially wetting liquids on brush-covered substrates, i.e., we model the coupled dynamics of…

physics.flu-dyn2023

Drops on polymer brushes -- advances in thin-film modelling of adaptive substrates

Simon Hartmann, Jan Diekmann, Daniel Greve +1

We briefly review recent advances in the hydrodynamic modeling of the dynamics of droplets on adaptive substrates, in particular, solids that are covered by polymer brushes. Thereb…

cond-mat.str-el2023

Leading-logarithmic approximation by one-loop renormalization group within Matsubara formalism

Jan Diekmann, Severin G. Jakobs

We demonstrate how to devise a Matsubara-formalism-based one-loop approximation to the flow of the functional renormalization group (FRG) that reproduces identically the leading-lo…