Propagation of dipolar-coupled transverse domain walls in a Permalloy/Non-magnetic/Permalloy trilayer was investigated using micromagnetic modeling. Circulating stray fields meant that the walls adopted a composite structure with behavior analogous to walls seen in nanotubes. Wall velocities were sensitive to the chirality of the stray field circulation, with velocities of the most favored chirality enhanced by 32% compared with velocities seen in the individual constituent layers just below their Walker breakdown field. Additionally, Walker breakdown was completely suppressed within the trilayer for both chiralities, despite occurring in the constituent layers when modelled in isolation, leading to a maximum of 317% velocity enhancement. W...
Artículo de publicación ISIThis paper is focused to the field-induced dynamics of vortex-like domain...
We investigated the motion of domain walls in ferromagnetic cylindrical nanowires by solving the Lan...
The future developments of three-dimensional magnetic nanotechnology require the control of domain w...
Propagation of dipolar-coupled transverse domain walls in a permalloy/non-magnetic/permalloy trilaye...
We report on a micromagnetic study on domain wall (DW) propagation in ferromagnetic nanotubes. It is...
We report on a micromagnetic study on domain wall (DW) propagation in ferromagnetic nanotubes. It is...
In this work we study the controlled propagation of magnetic domain walls in ferromagnetic nanowires...
Strong coupling of magnetic domain walls onto straight ferroelastic boundaries of a ferroelectric la...
The control of individual magnetic domain walls has potential for future spintronic memory and data ...
6 pages, 4 figuresInternational audienceWhile the usual approach to tailor the behavior of condensed...
Magnetic sensing and logic devices based on the motion of magnetic domain walls rely on the precise ...
The control of individual magnetic domain walls has potential for future spintronic memory and data ...
Magnetic domain walls is the cornerstone for novel non-volatile storage and logic devices. These dev...
Spin-orbit torque (SOT) driven domain wall motion has attracted significant attention as the basis f...
Remarkable reductions in the velocity of magnetic-field (or electric current)-driven domain-wall (DW...
Artículo de publicación ISIThis paper is focused to the field-induced dynamics of vortex-like domain...
We investigated the motion of domain walls in ferromagnetic cylindrical nanowires by solving the Lan...
The future developments of three-dimensional magnetic nanotechnology require the control of domain w...
Propagation of dipolar-coupled transverse domain walls in a permalloy/non-magnetic/permalloy trilaye...
We report on a micromagnetic study on domain wall (DW) propagation in ferromagnetic nanotubes. It is...
We report on a micromagnetic study on domain wall (DW) propagation in ferromagnetic nanotubes. It is...
In this work we study the controlled propagation of magnetic domain walls in ferromagnetic nanowires...
Strong coupling of magnetic domain walls onto straight ferroelastic boundaries of a ferroelectric la...
The control of individual magnetic domain walls has potential for future spintronic memory and data ...
6 pages, 4 figuresInternational audienceWhile the usual approach to tailor the behavior of condensed...
Magnetic sensing and logic devices based on the motion of magnetic domain walls rely on the precise ...
The control of individual magnetic domain walls has potential for future spintronic memory and data ...
Magnetic domain walls is the cornerstone for novel non-volatile storage and logic devices. These dev...
Spin-orbit torque (SOT) driven domain wall motion has attracted significant attention as the basis f...
Remarkable reductions in the velocity of magnetic-field (or electric current)-driven domain-wall (DW...
Artículo de publicación ISIThis paper is focused to the field-induced dynamics of vortex-like domain...
We investigated the motion of domain walls in ferromagnetic cylindrical nanowires by solving the Lan...
The future developments of three-dimensional magnetic nanotechnology require the control of domain w...