We report on the observation of the polygonal whirlpools in the thin layer of ferrofluid under illumination with a laser beam carrying optical vortex and in the presence of a vertical magnetic field. This kind of structures have attracted attention after discovering a hexagonal storm in Saturn’s atmosphere. Our polygonal whirlpools were created in a closed system (no free surfaces) in micro-scale (whirlpool diameter <20 μm) by the use of holographic optical tweezers. The polygonal shape was changed by varying the magnetic field strength or value of the optical vortex topological charge
We report a magnetic X-ray microscopy study of the pattern formation of circulation in arrays of mag...
We study the vortex structure in a Pb film deposited on top of a periodic array of ferromagnetic squ...
Abstract Magnetic field‐directed assemblies of magnetic nanoparticles (MNPs) in ferrofluids exhibit ...
The power-flow lines of light interacting with a metallic nanoparticle, in the proximity of its plas...
We report on localized patches of cellular hexagons observed on the surface of a magnetic fluid in a...
We report on recent progress in understanding the formation of surface protuberances on a planar lay...
Direct microscopic observation of a thin sample of ionic ferrofluid, in the presence of a magnetic f...
Self-assembly is the spontaneous formation of larger structures from small building blocks. This pro...
Time-dependent interference was observed above a critical magnetic field H-c1 in ferrofluids by a no...
Magnetization dynamics in thin film ferromagnets can be studied using a dispersive hydrodynamic form...
Understanding the fundamental dynamics of topological vortex and antivortex naturally formed in micr...
We report a comprehensive study of the division of ferrofluid drops caused by their interaction with...
International audienceReentrant spin glasses are frustrated disordered ferromagnets developing vorte...
We have observed two- and three-dimensional ordered structures in electro-magnetorheological fluids ...
Ferrofluids are colloidal suspensions of monodomain magnetic particles, with an average size of 100 ...
We report a magnetic X-ray microscopy study of the pattern formation of circulation in arrays of mag...
We study the vortex structure in a Pb film deposited on top of a periodic array of ferromagnetic squ...
Abstract Magnetic field‐directed assemblies of magnetic nanoparticles (MNPs) in ferrofluids exhibit ...
The power-flow lines of light interacting with a metallic nanoparticle, in the proximity of its plas...
We report on localized patches of cellular hexagons observed on the surface of a magnetic fluid in a...
We report on recent progress in understanding the formation of surface protuberances on a planar lay...
Direct microscopic observation of a thin sample of ionic ferrofluid, in the presence of a magnetic f...
Self-assembly is the spontaneous formation of larger structures from small building blocks. This pro...
Time-dependent interference was observed above a critical magnetic field H-c1 in ferrofluids by a no...
Magnetization dynamics in thin film ferromagnets can be studied using a dispersive hydrodynamic form...
Understanding the fundamental dynamics of topological vortex and antivortex naturally formed in micr...
We report a comprehensive study of the division of ferrofluid drops caused by their interaction with...
International audienceReentrant spin glasses are frustrated disordered ferromagnets developing vorte...
We have observed two- and three-dimensional ordered structures in electro-magnetorheological fluids ...
Ferrofluids are colloidal suspensions of monodomain magnetic particles, with an average size of 100 ...
We report a magnetic X-ray microscopy study of the pattern formation of circulation in arrays of mag...
We study the vortex structure in a Pb film deposited on top of a periodic array of ferromagnetic squ...
Abstract Magnetic field‐directed assemblies of magnetic nanoparticles (MNPs) in ferrofluids exhibit ...