Magnetic domain wall (DW)-based logic devices offer numerous opportunities for emerging electronics applications allowing superior performance characteristics such as fast motion, high density, and nonvolatility to process information. However, these devices rely on an external magnetic field, which limits their implementation; this is particularly problematic in large-scale applications. Multiferroic systems consisting of a piezoelectric substrate coupled with ferromagnets provide a potential solution that provides the possibility of controlling magnetization through an electric field via magnetoelastic coupling. Strain-induced magnetization anisotropy tilting can influence the DW motion in a controllable way. We demonstrate a method to pe...
| openaire: EC/H2020/665215/EU//EMOTION | openaire: EC/FP7/307502/EU//E-CONTROLA magnetic logic conc...
In this work, we experimentally demonstrate deterministic electrically driven, strain-mediated domai...
In this work, we experimentally demonstrate deterministic electrically driven, strain-mediated domai...
International audienceThe control of magnetic order in nanoscale devices underpins many proposals fo...
International audienceThe control of magnetic order in nanoscale devices underpins many proposals fo...
An all-magnetic logic scheme has the advantages of being non-volatile and energy efficient over the ...
Magnetic memory has attracted substantial interest due to its non-volatility and zero power dissipat...
Modern data storage devices use the magnetization in a material to store information. Current resear...
Modern data storage devices use the magnetization in a material to store information. Current resear...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
The ever increasing digital data require memory and logic devices that have high speed, need low pow...
The ever increasing digital data require memory and logic devices that have high speed, need low pow...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
Controlling magnetism on the nanoscale has attracted considerable research interest for the high pot...
| openaire: EC/H2020/665215/EU//EMOTION | openaire: EC/FP7/307502/EU//E-CONTROLA magnetic logic conc...
In this work, we experimentally demonstrate deterministic electrically driven, strain-mediated domai...
In this work, we experimentally demonstrate deterministic electrically driven, strain-mediated domai...
International audienceThe control of magnetic order in nanoscale devices underpins many proposals fo...
International audienceThe control of magnetic order in nanoscale devices underpins many proposals fo...
An all-magnetic logic scheme has the advantages of being non-volatile and energy efficient over the ...
Magnetic memory has attracted substantial interest due to its non-volatility and zero power dissipat...
Modern data storage devices use the magnetization in a material to store information. Current resear...
Modern data storage devices use the magnetization in a material to store information. Current resear...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
The ever increasing digital data require memory and logic devices that have high speed, need low pow...
The ever increasing digital data require memory and logic devices that have high speed, need low pow...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
Controlling magnetism on the nanoscale has attracted considerable research interest for the high pot...
| openaire: EC/H2020/665215/EU//EMOTION | openaire: EC/FP7/307502/EU//E-CONTROLA magnetic logic conc...
In this work, we experimentally demonstrate deterministic electrically driven, strain-mediated domai...
In this work, we experimentally demonstrate deterministic electrically driven, strain-mediated domai...