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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 …
Current-induced spin-orbit torques in ferromagnetic and antiferromagnetic systems
Spin-orbit coupling in inversion-asymmetric magnetic crystals and structures has emerged
as a powerful tool to generate complex magnetic textures, interconvert charge and spin …
as a powerful tool to generate complex magnetic textures, interconvert charge and spin …
Ferrimagnets for spintronic devices: From materials to applications
Spintronic devices use spin instead of charge to process information and are widely
considered as promising candidates for next-generation electronic devices. In past decades …
considered as promising candidates for next-generation electronic devices. In past decades …
Fast current-driven domain walls and small skyrmions in a compensated ferrimagnet
Spintronics is a research field that aims to understand and control spins on the nanoscale
and should enable next-generation data storage and manipulation. One technological and …
and should enable next-generation data storage and manipulation. One technological and …
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 …
Recent advances in spin-orbit torques: Moving towards device applications
The ability of spintronic devices to utilize an electric current for manipulating the
magnetization has resulted in large-scale developments, such as magnetic random access …
magnetization has resulted in large-scale developments, such as magnetic random access …
Asymmetric magnetization switching and programmable complete Boolean logic enabled by long-range intralayer Dzyaloshinskii-Moriya interaction
After decades of efforts, some fundamental physics for electrical switching of magnetization
is still missing. Here, we report the discovery of the long-range intralayer Dzyaloshinskii …
is still missing. Here, we report the discovery of the long-range intralayer Dzyaloshinskii …
Electrical control of magnetism by electric field and current-induced torques
While early magnetic memory designs relied on magnetization switching by locally
generated magnetic fields, key insights in condensed matter physics later suggested the …
generated magnetic fields, key insights in condensed matter physics later suggested the …
Spintronics with compensated ferrimagnets
Magnetic information storage has been achieved by controlling and sensing the magnetic
moment orientation of nanoscale ferromagnets. Recently, there has been concentrated effort …
moment orientation of nanoscale ferromagnets. Recently, there has been concentrated effort …
Orbital torque in rare-earth transition-metal ferrimagnets
Orbital currents have recently emerged as a promising tool to achieve electrical control of
the magnetization in thin-film ferromagnets. Efficient orbital-to-spin conversion is required in …
the magnetization in thin-film ferromagnets. Efficient orbital-to-spin conversion is required in …