Roadmap of spin–orbit torques
Spin–orbit torque (SOT) is an emerging technology that enables the efficient manipulation of
spintronic devices. The initial processes of interest in SOTs involved electric fields, spin …
spintronic devices. The initial processes of interest in SOTs involved electric fields, spin …
Spin-orbit torques: Materials, mechanisms, performances, and potential applications
Current-induced spin-orbit torque (SOT) is attracting increasing interest and exciting
significant research activity. We aim to provide a comprehensive review of recent progress in …
significant research activity. We aim to provide a comprehensive review of recent progress in …
Giant tunable spin Hall angle in sputtered Bi2Se3 controlled by an electric field
Finding an effective way to greatly tune spin Hall angle in a low power manner is of
fundamental importance for tunable and energy-efficient spintronic devices. Recently …
fundamental importance for tunable and energy-efficient spintronic devices. Recently …
Roadmap on magnetoelectric materials and devices
The possibility of tuning the magnetic properties of materials with voltage (converse
magnetoelectricity) or generating electric voltage with magnetic fields (direct …
magnetoelectricity) or generating electric voltage with magnetic fields (direct …
A magnetoelastic twist on magnetic noise: The connection with intrinsic nonlinearities
Intrinsic magnetic noise limits the functionality of all magnetic field sensors and related
devices using magnetic films as sensing elements. A novel origin of magnetic noise due to …
devices using magnetic films as sensing elements. A novel origin of magnetic noise due to …
Magnetic materials: A journey from finding north to an exciting printed future
The potential implications/applications of printing technologies are being recognized
worldwide across different disciplines and industries. Printed magnetoactive smart materials …
worldwide across different disciplines and industries. Printed magnetoactive smart materials …
Electric-Field Control of Spin-Orbit Torques in Perpendicularly Magnetized Films
Controlling magnetism by electric fields offers a highly attractive perspective for designing
future generations of energy-efficient information technologies. Here, we demonstrate that …
future generations of energy-efficient information technologies. Here, we demonstrate that …
Recent development of E-field control of interfacial magnetism in multiferroic heterostructures
The full E-field control of multiferroic interfacial magnetism is a long-standing challenge for
micro-electromechanical systems (MEMS) and has the potential to transform electronics …
micro-electromechanical systems (MEMS) and has the potential to transform electronics …
The chiral Hall effect in canted ferromagnets and antiferromagnets
The anomalous Hall effect has been indispensable in our understanding of numerous
magnetic phenomena. This concerns both ferromagnetic materials, as well as diverse …
magnetic phenomena. This concerns both ferromagnetic materials, as well as diverse …
Multiferroic heterostructures for spintronics
For next-generation technology, magnetic systems are of interest due to the natural ability to
store information and, through spin transport, propagate this information for logic functions …
store information and, through spin transport, propagate this information for logic functions …