We use a scanning nanometer-scale superconducting quantum interference device to map the stray magnetic field produced by individual ferromagnetic nanotubes (FNTs) as a function of applied magnetic field. The images are taken as each FNT is led through magnetic reversal and are compared with micromagnetic simulations, which correspond to specific magnetization configurations. In magnetic fields applied perpendicular to the FNT long axis, their magnetization appears to reverse through vortex states, that is, configurations with vortex end domains or in the case of a sufficiently short FNT with a single global vortex. Geometrical imperfections in the samples and the resulting distortion of idealized magnetization configurations influence the ...
*S Supporting Information ABSTRACT: Recent experimental and theoretical work has focused on ferromag...
Cette thèse explore les domaines magnétiques et les parois de domaine (PD), dans des nanotubes (NTs)...
Nanoscale magnetic imaging can provide microscopic information about length scales, inhomogeneity an...
We use a scanning nanometer-scale superconducting quantum interference device to map the stray magne...
We report on the experimental and theoretical investigation of the magnetization reversal in magneti...
Artificial spin ices are a class of metamaterials consisting of magnetostatically coupled nanomagnet...
Artificial spin ices are a class of metamaterials consisting of magnetostatically coupled nanomagnet...
The reversal of uniform axial magnetization in a ferromagnetic nanotube (FNT) has been predicted to ...
Micromagnetic simulations of magnetization reversal were performed for magnetic nanotubes of a finit...
Micromagnetic simulations of magnetization reversal were performed for magnetic nanotubes of a finit...
Despite decades of advances in magnetic imaging, obtaining direct, quantitative information with nan...
Thin-film ferromagnetic disks present a vortex spin structure whose dynamics, added to the small siz...
We image the remnant magnetization configurations of CoFeB and permalloy nanotubes (NTs) using x-ray...
Magnetic nanowires, conceived as individual building blocks for spintronic devices, constitute a wel...
We investigate the magnetization reversal mechanism in an individual permalloy (Py) nanotube (NT) us...
*S Supporting Information ABSTRACT: Recent experimental and theoretical work has focused on ferromag...
Cette thèse explore les domaines magnétiques et les parois de domaine (PD), dans des nanotubes (NTs)...
Nanoscale magnetic imaging can provide microscopic information about length scales, inhomogeneity an...
We use a scanning nanometer-scale superconducting quantum interference device to map the stray magne...
We report on the experimental and theoretical investigation of the magnetization reversal in magneti...
Artificial spin ices are a class of metamaterials consisting of magnetostatically coupled nanomagnet...
Artificial spin ices are a class of metamaterials consisting of magnetostatically coupled nanomagnet...
The reversal of uniform axial magnetization in a ferromagnetic nanotube (FNT) has been predicted to ...
Micromagnetic simulations of magnetization reversal were performed for magnetic nanotubes of a finit...
Micromagnetic simulations of magnetization reversal were performed for magnetic nanotubes of a finit...
Despite decades of advances in magnetic imaging, obtaining direct, quantitative information with nan...
Thin-film ferromagnetic disks present a vortex spin structure whose dynamics, added to the small siz...
We image the remnant magnetization configurations of CoFeB and permalloy nanotubes (NTs) using x-ray...
Magnetic nanowires, conceived as individual building blocks for spintronic devices, constitute a wel...
We investigate the magnetization reversal mechanism in an individual permalloy (Py) nanotube (NT) us...
*S Supporting Information ABSTRACT: Recent experimental and theoretical work has focused on ferromag...
Cette thèse explore les domaines magnétiques et les parois de domaine (PD), dans des nanotubes (NTs)...
Nanoscale magnetic imaging can provide microscopic information about length scales, inhomogeneity an...