Magnetic racetrack memory has significantly evolved and developed since its first experimental verification and is considered one of the most promising candidates for future high-density on-chip solid-state memory. However, both the lack of a fast and precise magnetic domain wall (DW) shifting mechanism and the required extremely high DW motion (DWM) driving current make the racetrack difficult to commercialize. Here, we propose a method for coherent DWM that is free from the above issues, which is driven by chirality switching (CS) and an ultralow spin–orbit–torque (SOT) current. The CS, as the driving force of DWM, is achieved by the sign change of the Dzyaloshinskii–Moriya interaction, which is further induced by a ferroelectric switchin...
Magnetic storage based on racetrack memory is very promising for the design of ultra-dense, low-cost...
Magnetic skyrmions are attracting a growing interest from both a fundamental and a technological poi...
In most ferromagnets the magnetization rotates from one domain to the next with no preferred handedn...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Topologically distinct magnetic structures like skyrmions, domain walls, and the uniformly magnetize...
Current-induced domain wall motion (CIDWM) is regarded as a promising way towards achieving emerging...
International audienceWe show that the spin-orbit torque induced magnetization switching in nanomagn...
International audienceWe show that the spin-orbit torque induced magnetization switching in nanomagn...
Magnetic skyrmions are stabilized by a combination of external magnetic fields, stray field energies...
Magnetic storage based on racetrack memory is very promising for the design of ultra-dense, low-cost...
Magnetic skyrmions are attracting a growing interest from both a fundamental and a technological poi...
In most ferromagnets the magnetization rotates from one domain to the next with no preferred handedn...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Magnetic racetrack memory has significantly evolved and developed since its first experimental verif...
Topologically distinct magnetic structures like skyrmions, domain walls, and the uniformly magnetize...
Current-induced domain wall motion (CIDWM) is regarded as a promising way towards achieving emerging...
International audienceWe show that the spin-orbit torque induced magnetization switching in nanomagn...
International audienceWe show that the spin-orbit torque induced magnetization switching in nanomagn...
Magnetic skyrmions are stabilized by a combination of external magnetic fields, stray field energies...
Magnetic storage based on racetrack memory is very promising for the design of ultra-dense, low-cost...
Magnetic skyrmions are attracting a growing interest from both a fundamental and a technological poi...
In most ferromagnets the magnetization rotates from one domain to the next with no preferred handedn...