International audienceThe usage of magnetic nanoparticles (NPs) in applications necessitates a precise mastering of their properties at the single nanoparticle level. There has been a lot of progress in the understanding of the magnetic properties of NPs, but incomparably less when interparticle interactions govern the overall magnetic response. Here, we present a quantitative investigation of magnetic fields generated by small clusters of NPs assembled on a dielectric non-magnetic surface. Structures ranging from individual NPs to fifth-fold particulate clusters are investigated in their magnetization saturation state by magnetic force microscopy and numerical calculations. It is found that the magnetic stray field does not increase propor...
The performance characteristics of magnetic nanoparticles toward application, e.g., in medicine and ...
Photoinduced magnetic force between nanostructures, at optical frequencies, is investigated theoreti...
Single domain magnetic nanoparticles (MNPs) have been a vivid subject of intense research for the la...
International audienceThe usage of magnetic nanoparticles (NPs) in applications necessitates a preci...
Colloidal iron nanoparticles with a core size of 10.6 nm were examined using magnetic force microsco...
We analyze here the equilibrium magnetization state of densely packed interacting superparamagnetic ...
Magnetic force microscopy (MFM) has been employed to image the magnetic stray field from cobalt nano...
Within the last years, a fundamental understanding of nanoscaled materials has become a tremendous c...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
The fundamental understanding of nanoscale materials has been the focus of much scientific and techn...
Magnetization of clusters is often simulated using atomistic spin dynamics for a fixed lattice. Coup...
Magnetic domain configurations in two samples containing small aggregates of FeO nanoparticles of ab...
By means of polarized small-angle neutron scattering, we have resolved the long-standing challenge o...
The development of magnetic nanoparticles for biomedical applications requires a detailed characteri...
Presented here is a summary of the improvements made to a standard magnetic force microscope for the...
The performance characteristics of magnetic nanoparticles toward application, e.g., in medicine and ...
Photoinduced magnetic force between nanostructures, at optical frequencies, is investigated theoreti...
Single domain magnetic nanoparticles (MNPs) have been a vivid subject of intense research for the la...
International audienceThe usage of magnetic nanoparticles (NPs) in applications necessitates a preci...
Colloidal iron nanoparticles with a core size of 10.6 nm were examined using magnetic force microsco...
We analyze here the equilibrium magnetization state of densely packed interacting superparamagnetic ...
Magnetic force microscopy (MFM) has been employed to image the magnetic stray field from cobalt nano...
Within the last years, a fundamental understanding of nanoscaled materials has become a tremendous c...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
The fundamental understanding of nanoscale materials has been the focus of much scientific and techn...
Magnetization of clusters is often simulated using atomistic spin dynamics for a fixed lattice. Coup...
Magnetic domain configurations in two samples containing small aggregates of FeO nanoparticles of ab...
By means of polarized small-angle neutron scattering, we have resolved the long-standing challenge o...
The development of magnetic nanoparticles for biomedical applications requires a detailed characteri...
Presented here is a summary of the improvements made to a standard magnetic force microscope for the...
The performance characteristics of magnetic nanoparticles toward application, e.g., in medicine and ...
Photoinduced magnetic force between nanostructures, at optical frequencies, is investigated theoreti...
Single domain magnetic nanoparticles (MNPs) have been a vivid subject of intense research for the la...