peer reviewedSmall objects floating on a fluid have a tendency to aggregate due to capillary forces. This effect has been used, with the help of a magnetic induction field, to assemble submillimeter metallic spheres into a variety of structures, whose shape and size can be tuned. Under time-varying fields, these assemblies can propel themselves due to a breaking of time reversal symmetry in their adopted shapes. In this article, we study the influence of an in-plane rotation of the magnetic field on these structures. Various rotational modes have been observed with different underlying mechanisms. The magnetic properties of the particles cause them to rotate individually. Dipole-dipole interactions in the assembly can cause the whole struct...
Metachornal waves in magnetic micro-robotic paddles for artificial cilia - DatasetBiological cilia g...
peer reviewedSelf-assembly due to capillary forces is a common method for generating 2D mesoscale st...
Biological flows at the microscopic scale are important for the transport of nutrients, locomotion, ...
peer reviewedWhen tiny soft ferromagnetic particles are placed along a liquid interface and exposed ...
Small objects floating on a fluid have a tendency to aggregate due to capillary forces. This effect ...
Because they cause a deformation of the interface, floating particles interact. In particular, ident...
peer reviewedReview article on magnetocapillary self-assemblies, and in particular microswimmers, wh...
When particles are suspended at air-water interfaces in the presence of a vertical magnetic field, d...
We demonstrate experimentally and in computer simulations that magnetic microfloaters can self-organ...
We have experimentally investigated the interactions between floating magnetic spheres which are sub...
Self-propelled particles are one prototype of synthetic active matter used to understand complex bio...
Magnetocapillary self-assemblies form when soft-ferromagnetic particles are deposited on a liquid su...
This paper presents a numerical study of the dynamic self-assembly of neutrally buoyant particles ro...
Biological cilia that generate fluid flow or propulsion are often found to exhibit a collective wave...
Control on microscopic scales depends critically on our ability to manipulate interactions with diff...
Metachornal waves in magnetic micro-robotic paddles for artificial cilia - DatasetBiological cilia g...
peer reviewedSelf-assembly due to capillary forces is a common method for generating 2D mesoscale st...
Biological flows at the microscopic scale are important for the transport of nutrients, locomotion, ...
peer reviewedWhen tiny soft ferromagnetic particles are placed along a liquid interface and exposed ...
Small objects floating on a fluid have a tendency to aggregate due to capillary forces. This effect ...
Because they cause a deformation of the interface, floating particles interact. In particular, ident...
peer reviewedReview article on magnetocapillary self-assemblies, and in particular microswimmers, wh...
When particles are suspended at air-water interfaces in the presence of a vertical magnetic field, d...
We demonstrate experimentally and in computer simulations that magnetic microfloaters can self-organ...
We have experimentally investigated the interactions between floating magnetic spheres which are sub...
Self-propelled particles are one prototype of synthetic active matter used to understand complex bio...
Magnetocapillary self-assemblies form when soft-ferromagnetic particles are deposited on a liquid su...
This paper presents a numerical study of the dynamic self-assembly of neutrally buoyant particles ro...
Biological cilia that generate fluid flow or propulsion are often found to exhibit a collective wave...
Control on microscopic scales depends critically on our ability to manipulate interactions with diff...
Metachornal waves in magnetic micro-robotic paddles for artificial cilia - DatasetBiological cilia g...
peer reviewedSelf-assembly due to capillary forces is a common method for generating 2D mesoscale st...
Biological flows at the microscopic scale are important for the transport of nutrients, locomotion, ...