Concepts for information storage and logical processing based on magnetic domain walls have great potential for implementation in future information and communications technologies. To date, the need to apply power hungry magnetic fields or heat dissipating spin polarized currents to manipulate magnetic domain walls has limited the development of such technologies. The possibility of controlling magnetic domain walls using voltages offers an energy efficient route to overcome these limitations. Here we show that a voltage-induced uniaxial strain induces reversible deterministic switching of the chirality of a magnetic vortex wall. We discuss how this functionality will be applicable to schemes for information storage and logical processing,...
An all-magnetic logic scheme has the advantages of being non-volatile and energy efficient over the ...
Magnetic domain-walls (DWs) with a preferred chirality exhibit very efficient current-driven motion....
Magnetic domain-walls (DWs) with a preferred chirality exhibit very efficient current-driven motion....
Concepts for information storage and logical processing based on magnetic domain walls have great po...
Concepts for information storage and logical processing based on magnetic domain walls have great po...
Concepts for information storage and logical processing based on magnetic domain walls have great po...
Deterministic switching of a magnetic vortex with an electric field is challenging because electric ...
Magnetic vortex dynamics in nanoscale structures is currently a topic of intensive research not only...
The interactions of vortexdomain walls with corners in planar magnetic nanowires are probed using ma...
The interactions of vortexdomain walls with corners in planar magnetic nanowires are probed using ma...
The interactions of vortex domain walls with corners in planar magnetic nanowires are probed using m...
The interaction of vortex domain walls with the end domain spin structure resent at the rectangular ...
Magnetic domain wall (DW)-based logic devices offer numerous opportunities for emerging electronics ...
Using photoemission electron microscopy (PEEM) to image ferromagnetism in polycrystalline Ni disks, ...
Deterministic switching of a magnetic vortex with an electric field is challenging because electric ...
An all-magnetic logic scheme has the advantages of being non-volatile and energy efficient over the ...
Magnetic domain-walls (DWs) with a preferred chirality exhibit very efficient current-driven motion....
Magnetic domain-walls (DWs) with a preferred chirality exhibit very efficient current-driven motion....
Concepts for information storage and logical processing based on magnetic domain walls have great po...
Concepts for information storage and logical processing based on magnetic domain walls have great po...
Concepts for information storage and logical processing based on magnetic domain walls have great po...
Deterministic switching of a magnetic vortex with an electric field is challenging because electric ...
Magnetic vortex dynamics in nanoscale structures is currently a topic of intensive research not only...
The interactions of vortexdomain walls with corners in planar magnetic nanowires are probed using ma...
The interactions of vortexdomain walls with corners in planar magnetic nanowires are probed using ma...
The interactions of vortex domain walls with corners in planar magnetic nanowires are probed using m...
The interaction of vortex domain walls with the end domain spin structure resent at the rectangular ...
Magnetic domain wall (DW)-based logic devices offer numerous opportunities for emerging electronics ...
Using photoemission electron microscopy (PEEM) to image ferromagnetism in polycrystalline Ni disks, ...
Deterministic switching of a magnetic vortex with an electric field is challenging because electric ...
An all-magnetic logic scheme has the advantages of being non-volatile and energy efficient over the ...
Magnetic domain-walls (DWs) with a preferred chirality exhibit very efficient current-driven motion....
Magnetic domain-walls (DWs) with a preferred chirality exhibit very efficient current-driven motion....