activity
20232026
most citedInertial self-propelled particles in anisotropic environments

11 citations · 11 across the 3 of their papers we have counts for

collaborators

5 papers

cond-mat.stat-mech2026

A particle-resolved rheological study of chirality transfer and odd transport

Rémi Goerlich, Alexander P. Antonov, Kristian Stølevik Olsen +4

Chirality, or the breaking of mirror symmetry, appears across all scales in nature, from molecular conformations to the dynamics of bacterial collectives. Environments composed of…

cond-mat.soft2024

Dynamical clustering and wetting phenomena in inertial active matter

Lorenzo Caprini, Davide Breoni, Anton Ldov +2

Dynamical clustering represents a characteristic feature of active matter consisting of self-propelled agents that convert energy from the environment into mechanical motion. At th…

cond-mat.soft2024

Inertial active matter with Coulomb friction

Alexander P. Antonov, Lorenzo Caprini, Anton Ldov +2

Friction is central to the motion of active (self-propelled) objects such as bacteria, animals, and robots. While in a viscous fluid friction is described by Stokes's law, objects…

cond-mat.stat-mech2023

Emergent memory from tapping collisions in active granular matter

Lorenzo Caprini, Anton Ldov, Rahul Kumar Gupta +4

In an equilibrium thermal environment, random elastic collisions between background particles and a tracer establish the picture of Brownian motion fulfilling the celebrated Einste…

cond-mat.soft202311 cited

Inertial self-propelled particles in anisotropic environments

Alexander R. Sprenger, Christian Scholz, Anton Ldov +2

Self-propelled particles in anisotropic environments can exhibit a motility that depends on their orientation. This dependence is relevant for a plethora of living organisms but di…