High-resolution magnetic imaging is of utmost importance to understand magnetism at the nanoscale. In the present work, we use a magnetic force microscope (MFM) operating under in-plane magnetic field in order to observe with high accuracy the domain configuration changes in Co nanowires as a function of the externally applied magnetic field. The main result is the quantitative evaluation of the coercive field of the individual nanostructures. Such characterization is performed by using an MFM-based technique in which a map of the magnetic signal is obtained as a function of both the lateral displacement and the magnetic field
The magnetization reversal of two-dimensional arrays of parallel ferromagnetic Fe nanowires embedded...
Oral presentation given at the Nano and giga challenges in electronics, photonics and renewable ener...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
High-resolution magnetic imaging is of utmost importance to understand magnetism at the nanoscale. I...
We systematically study individual micro- and nanometric polycrystalline cobalt wires grown by focus...
We systematically study individual micro- and nanometric polycrystalline cobalt wires grown by focus...
We systematically study individual micro- and nanometric polycrystalline cobalt wires grown by focus...
We systematically study individual micro- and nanometric polycrystalline cobalt wires grown by focus...
Magnetic force microscopy (MFM) is being used to image [Co/Cu].N and pure Co nanowires with diameter...
The main subject of this thesis was the investigation whether or not the magnetoresistance behavior ...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
The magnetization reversal of two-dimensional arrays of parallel ferromagnetic Fe nanowires embedded...
Nanostripes with varying widths are lithographed on Co thin films with strong magnetic anisotropy re...
The mechanism of magnetization reversal has been studied in a model system of self-assembled cobalt ...
The magnetization reversal of two-dimensional arrays of parallel ferromagnetic Fe nanowires embedded...
Oral presentation given at the Nano and giga challenges in electronics, photonics and renewable ener...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
High-resolution magnetic imaging is of utmost importance to understand magnetism at the nanoscale. I...
We systematically study individual micro- and nanometric polycrystalline cobalt wires grown by focus...
We systematically study individual micro- and nanometric polycrystalline cobalt wires grown by focus...
We systematically study individual micro- and nanometric polycrystalline cobalt wires grown by focus...
We systematically study individual micro- and nanometric polycrystalline cobalt wires grown by focus...
Magnetic force microscopy (MFM) is being used to image [Co/Cu].N and pure Co nanowires with diameter...
The main subject of this thesis was the investigation whether or not the magnetoresistance behavior ...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
The magnetization reversal of two-dimensional arrays of parallel ferromagnetic Fe nanowires embedded...
Nanostripes with varying widths are lithographed on Co thin films with strong magnetic anisotropy re...
The mechanism of magnetization reversal has been studied in a model system of self-assembled cobalt ...
The magnetization reversal of two-dimensional arrays of parallel ferromagnetic Fe nanowires embedded...
Oral presentation given at the Nano and giga challenges in electronics, photonics and renewable ener...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...