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Rashba-like physics in condensed matter
Spin–orbit coupling induces a unique form of Zeeman interaction in momentum space in
materials that lack inversion symmetry: the electron's spin is locked on an effective magnetic …
materials that lack inversion symmetry: the electron's spin is locked on an effective magnetic …
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 …
Scalable energy-efficient magnetoelectric spin–orbit logic
Since the early 1980s, most electronics have relied on the use of complementary metal–
oxide–semiconductor (CMOS) transistors. However, the principles of CMOS operation …
oxide–semiconductor (CMOS) transistors. However, the principles of CMOS operation …
Oxide spin-orbitronics: spin–charge interconversion and topological spin textures
Oxide materials possess a vast range of functional properties, ranging from
superconductivity to multiferroicity, that stem from the interplay between the lattice, charge …
superconductivity to multiferroicity, that stem from the interplay between the lattice, charge …
Nontrivial torque generation by orbital angular momentum injection in ferromagnetic-metal/ trilayers
Efficient electrical generation of torque is desired to develop innovative magnetic
nanodevices. The torque can be generated by charge to spin conversion of heavy-metal …
nanodevices. The torque can be generated by charge to spin conversion of heavy-metal …
Quantum materials for spin and charge conversion
Spintronics aims to utilize the spin degree of freedom for information storage and computing
applications. One major issue is the generation and detection of spins via spin and charge …
applications. One major issue is the generation and detection of spins via spin and charge …
Map** spin–charge conversion to the band structure in a topological oxide two-dimensional electron gas
While spintronics has traditionally relied on ferromagnetic metals as spin generators and
detectors, spin–orbitronics exploits the efficient spin–charge interconversion enabled by …
detectors, spin–orbitronics exploits the efficient spin–charge interconversion enabled by …
Understanding and designing metal matrix nanocomposites with high electrical conductivity: A review
Metal matrix nanocomposites (MMNCs) are gaining more and more interest because
matrices and nanophases with heterogeneous characteristics could combine to provide …
matrices and nanophases with heterogeneous characteristics could combine to provide …
Spin-orbit torque switching of magnetic tunnel junctions for memory applications
Spin-orbit torques (SOT) provide a versatile tool to manipulate the magnetization of diverse
classes of materials and devices using electric currents, leading to novel spintronic memory …
classes of materials and devices using electric currents, leading to novel spintronic memory …
Oxide layer dependent orbital torque efficiency in ferromagnet/Cu/oxide heterostructures
The utilization of orbital transport provides a versatile and efficient spin manipulation
mechanism. As interest in orbital-mediated spin manipulation grows, we face a new issue to …
mechanism. As interest in orbital-mediated spin manipulation grows, we face a new issue to …