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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 …
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 …
Novel Spin–Orbit Torque Generation at Room Temperature in an All‐Oxide Epitaxial La0.7Sr0.3MnO3/SrIrO3 System
Spin–orbit torques (SOTs) that arise from materials with large spin–orbit coupling offer a new
pathway for energy‐efficient and fast magnetic information storage. SOTs in conventional …
pathway for energy‐efficient and fast magnetic information storage. SOTs in conventional …
Effects of Anisotropic Strain on Spin–Orbit Torque Produced by the Dirac Nodal Line Semimetal IrO2
We report spin-torque ferromagnetic resonance studies of the efficiency of the dam**-like
(ξDL) spin–orbit torque exerted on an adjacent ferromagnet film by current flowing in …
(ξDL) spin–orbit torque exerted on an adjacent ferromagnet film by current flowing in …
Oxide spintronics as a knot of physics and chemistry: recent progress and opportunities
Transition-metal oxides (TMOs) constitute a key material family in spintronics because of
mutually coupled degrees of freedom and tunable magneto-ionic properties. In this …
mutually coupled degrees of freedom and tunable magneto-ionic properties. In this …
Electric-Field Control of Spin Current Generation and Detection in Ferromagnet-Free SrTiO3-Based Nanodevices
Spintronics entails the generation, transport, manipulation and detection of spin currents,
usually in hybrid architectures comprising interfaces whose impact on performance is …
usually in hybrid architectures comprising interfaces whose impact on performance is …
[HTML][HTML] Spin–charge conversion in transition metal oxides
H Chen, D Yi - APL Materials, 2021 - pubs.aip.org
The interaction between spin and charge degrees of freedom offers a powerful tool to
manipulate magnetization in memories by the current induced spin–orbit torque. This novel …
manipulate magnetization in memories by the current induced spin–orbit torque. This novel …
Room-temperature spin-orbit torque switching in a manganite-based heterostructure
The oxide ferromagnet La 0.67 Sr 0.33 Mn O 3 (LSMO) possesses low saturation
magnetization (M s), a low magnetic dam** constant (α), and high carrier spin …
magnetization (M s), a low magnetic dam** constant (α), and high carrier spin …
Strain engineering of the charge and spin-orbital interactions in Sr2IrO4
In the high spin–orbit-coupled Sr2IrO4, the high sensitivity of the ground state to the details
of the local lattice structure shows a large potential for the manipulation of the functional …
of the local lattice structure shows a large potential for the manipulation of the functional …
Layered Ferromagnetic Structure Caused by the Proximity Effect and Interlayer Charge Transfer for LaNiO3/LaMnO3 Superlattices
M Wang, T Zhu, H Bai, Z Yin, H Xu, W Shi, Z Li… - Nano Letters, 2024 - ACS Publications
Magnetic proximity-induced magnetism in paramagnetic LaNiO3 (LNO) has spurred
intensive investigations in the past decade. However, no consensus has been reached so …
intensive investigations in the past decade. However, no consensus has been reached so …