activity
20202024
most citedCollective self-caging of active filaments in virtual confinement

6 citations · 8 across the 4 of their papers we have counts for

collaborators

5 papers

physics.bio-ph2024★ 6 cited

Collective self-caging of active filaments in virtual confinement

Maximilian Kurjahn, Leila Abbaspour, Franziska Papenfuß +4

Motility coupled to responsive behavior is essential for many microorganisms to seek and establish appropriate habitats. One of the simplest possible responses, reversing the direc…

cond-mat.soft2023

Long-range Velocity Correlations from Active Dopants

Leila Abbaspour, Rituparno Mandal, Peter Sollich +1

One of the most remarkable observations in dense active matter systems is the appearance of long-range velocity correlations without any explicit aligning interaction (of e.g.\ Vic…

physics.bio-ph2022

Quantifying gliding forces of filamentous cyanobacteria by self-buckling

Maximilian Kurjahn, Antaran Deka, Antoine Girot +5

Filamentous cyanobacteria are one of the oldest and today still most abundant lifeforms on earth, with manifold implications in ecology and economics. Their flexible filaments, oft…

cond-mat.soft2021★ 2 cited

Effects of direction reversals on patterns of active filaments

Leila Abbaspour, Ali Malek, Stefan Karpitschka +1

Active matter systems provide fascinating examples of pattern formation and collective motility without counterparts in equilibrium systems. Here, we employ Brownian dynamics simul…

cond-mat.soft2020

Enhanced diffusion of a tracer particle in a lattice model of a crowded active system

Leila Abbaspour, Stefan Klumpp

Living systems at the sub-cellular, cellular, and multi-cellular level are often crowded systems that contain active particles. The active motion of these particles can also propel…