International audiencePrecessional switching allows subnanosecond and deterministic reversal of magnetic data bits. It relies on triggering a large-angle, highly nonlinear precession of magnetic moments around a bias field. Here we demonstrate that a surface acoustic wave (SAW) propagating on a magnetostrictive semiconducting material produces an efficient torque that induces precessional switching. This is evidenced by Kerr microscopy and acoustic behavior analysis in a (Ga,Mn)(As,P) thin film. Using SAWs should therefore allow remote and wave control of individual magnetic bits at potentially GHz frequencies
We propose a method to control surface phonon transport by weak magnetic fields based on the pumping...
The current hard drives record the binary information in small magnetic domains. The recording densi...
A fundamental form of magnon-phonon interaction is an intrinsic property of magnetic materials, the ...
International audienceSurface acoustic waves (SAW) propagating on magneto-strictive ferromagnets can...
Investigations into fast magnetization switching are of both fundamental and technological interest....
International audienceNonlinear magnetization dynamics are of great interest, being, for instance, l...
Surface acoustic waves (SAWs) have significant potential for the energy-efficient control of magneti...
Surface acoustic waves (SAWs) have significant potential for the energy-efficient control of magneti...
The control of perpendicular magnetic anisotropy (PMA) in thin films by strain has considerable pote...
The control of perpendicular magnetic anisotropy (PMA) in thin films by strain has considerable pote...
The study of magnetic nanostripes has gained importance in the last decade since this nanostructure ...
Surface acoustic waves (SAWs) have emerged as innovative and energy-efficient means to manipulate do...
We present a tabletop-scale realization of a tunable metamaterial platform to control surface acoust...
This is the publisher’s final pdf. The published article is copyrighted by the American Institute of...
In this work, we propose the use of contact resonances, controlled via an external magnetic field, a...
We propose a method to control surface phonon transport by weak magnetic fields based on the pumping...
The current hard drives record the binary information in small magnetic domains. The recording densi...
A fundamental form of magnon-phonon interaction is an intrinsic property of magnetic materials, the ...
International audienceSurface acoustic waves (SAW) propagating on magneto-strictive ferromagnets can...
Investigations into fast magnetization switching are of both fundamental and technological interest....
International audienceNonlinear magnetization dynamics are of great interest, being, for instance, l...
Surface acoustic waves (SAWs) have significant potential for the energy-efficient control of magneti...
Surface acoustic waves (SAWs) have significant potential for the energy-efficient control of magneti...
The control of perpendicular magnetic anisotropy (PMA) in thin films by strain has considerable pote...
The control of perpendicular magnetic anisotropy (PMA) in thin films by strain has considerable pote...
The study of magnetic nanostripes has gained importance in the last decade since this nanostructure ...
Surface acoustic waves (SAWs) have emerged as innovative and energy-efficient means to manipulate do...
We present a tabletop-scale realization of a tunable metamaterial platform to control surface acoust...
This is the publisher’s final pdf. The published article is copyrighted by the American Institute of...
In this work, we propose the use of contact resonances, controlled via an external magnetic field, a...
We propose a method to control surface phonon transport by weak magnetic fields based on the pumping...
The current hard drives record the binary information in small magnetic domains. The recording densi...
A fundamental form of magnon-phonon interaction is an intrinsic property of magnetic materials, the ...