For deterministic magnetization switching by spin-orbit torque (SOT) in a perpendicular magnetic anisotropy system, an additional in-plane direction magnetic field is essential for deterministic switching by breaking the magnetization symmetry. Realizing chirality in a magnetic ordering system can be one approach for achieving asymmetry in the lateral direction for field-free magnetization switching. However, systematic analysis of the influence of the chiral spin system on deterministic switching is still scarce. In this report, the achievement of field-free SOT-induced magnetization switching by using a chiral spin configuration is investigated by experiments and micromagnetic simulations. We designed a system in which only part of the fe...
It is crucial to realize field-free, deterministic, current-induced switching in spin-orbit torque m...
Leveraging on interfacial Dzyaloshinskii-Moriya interaction (DMI) induced intrinsic magnetization ti...
International audienceModern magnetic-memory technology requires all-electric control of perpendicul...
We study the effect of the Dzyaloshinskii-Moriya interaction (DMI) on current-induced magnetic switc...
Recently, vast research has been under investigation on the role of chirality in magnetization dynam...
Spintronic devices provide an energy-efficient platform for implementing non-volatile memory and log...
The study of the mutual influence between chirality, spin and magnetism is a thoroughly documented f...
In this article, we analyze by modeling two possible mechanisms for magnetization switching using sp...
The combination of spintronics with magneto- electrochemistry, particularly involving truly chiral m...
The current-induced spin-orbit torque switching of ferromagnets has had huge impact in spintronics. ...
In most ferromagnets the magnetization rotates from one domain to the next with no preferred handedn...
International audienceWe show that the spin-orbit torque induced magnetization switching in nanomagn...
Magnetic domain-walls (DWs) with a preferred chirality exhibit very efficient current-driven motion....
We report the observation of current induced spin–orbit torque (SOT) switching of magnetization in a...
Magneto-electrochemistry (MEC) is a unique paradigm in science, where electrochemical experiments ar...
It is crucial to realize field-free, deterministic, current-induced switching in spin-orbit torque m...
Leveraging on interfacial Dzyaloshinskii-Moriya interaction (DMI) induced intrinsic magnetization ti...
International audienceModern magnetic-memory technology requires all-electric control of perpendicul...
We study the effect of the Dzyaloshinskii-Moriya interaction (DMI) on current-induced magnetic switc...
Recently, vast research has been under investigation on the role of chirality in magnetization dynam...
Spintronic devices provide an energy-efficient platform for implementing non-volatile memory and log...
The study of the mutual influence between chirality, spin and magnetism is a thoroughly documented f...
In this article, we analyze by modeling two possible mechanisms for magnetization switching using sp...
The combination of spintronics with magneto- electrochemistry, particularly involving truly chiral m...
The current-induced spin-orbit torque switching of ferromagnets has had huge impact in spintronics. ...
In most ferromagnets the magnetization rotates from one domain to the next with no preferred handedn...
International audienceWe show that the spin-orbit torque induced magnetization switching in nanomagn...
Magnetic domain-walls (DWs) with a preferred chirality exhibit very efficient current-driven motion....
We report the observation of current induced spin–orbit torque (SOT) switching of magnetization in a...
Magneto-electrochemistry (MEC) is a unique paradigm in science, where electrochemical experiments ar...
It is crucial to realize field-free, deterministic, current-induced switching in spin-orbit torque m...
Leveraging on interfacial Dzyaloshinskii-Moriya interaction (DMI) induced intrinsic magnetization ti...
International audienceModern magnetic-memory technology requires all-electric control of perpendicul...