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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 …
Physics of SrTiO3-based heterostructures and nanostructures: a review
This review provides a summary of the rich physics expressed within SrTiO 3-based
heterostructures and nanostructures. The intended audience is researchers who are …
heterostructures and nanostructures. The intended audience is researchers who are …
Highly efficient and tunable spin-to-charge conversion through Rashba coupling at oxide interfaces
The spin–orbit interaction couples the electrons' motion to their spin. As a result, a charge
current running through a material with strong spin–orbit coupling generates a transverse …
current running through a material with strong spin–orbit coupling generates a transverse …
Superconductivity in dilute SrTiO3: A review
Doped SrTiO 3, one of the most dilute bulk systems to display superconductivity, is perhaps
the first example of an unconventional superconductor, as it does not fit into the standard …
the first example of an unconventional superconductor, as it does not fit into the standard …
Theory of spin-orbit coupling at LaAlO/SrTiO interfaces and SrTiO surfaces
The theoretical understanding of the spin-orbit coupling (SOC) effects at LaAlO 3/SrTiO 3
interfaces and SrTiO 3 surfaces is still in its infancy. We perform first-principles density …
interfaces and SrTiO 3 surfaces is still in its infancy. We perform first-principles density …
Interface engineering and emergent phenomena in oxide heterostructures
Complex oxide interfaces have mesmerized the scientific community in the last decade due
to the possibility of creating tunable novel multifunctionalities, which are possible owing to …
to the possibility of creating tunable novel multifunctionalities, which are possible owing to …
Interface superconductor with gap behaviour like a high-temperature superconductor
The physics of the superconducting state in two-dimensional (2D) electron systems is
relevant to understanding the high-transition-temperature copper oxide superconductors …
relevant to understanding the high-transition-temperature copper oxide superconductors …
Light‐Induced Giant Rashba Spin–Orbit Coupling at Superconducting KTaO3(110) Heterointerfaces
The 2D electron system (2DES) at the KTaO3 surface or heterointerface with 5d orbitals
hosts extraordinary physical properties, including a stronger Rashba spin–orbit coupling …
hosts extraordinary physical properties, including a stronger Rashba spin–orbit coupling …
Two-dimensional electron gases at complex oxide interfaces
S Stemmer, S James Allen - Annual Review of Materials …, 2014 - annualreviews.org
Two-dimensional electron gases (2DEGs) at oxide interfaces may exhibit unique properties,
including effects from strong electron correlations, extremely high electron densities …
including effects from strong electron correlations, extremely high electron densities …
Tunable spin polarization and superconductivity in engineered oxide interfaces
Advances in growth technology of oxide materials allow single atomic layer control of
heterostructures. In particular delta do**, a key materials' engineering tool in today's …
heterostructures. In particular delta do**, a key materials' engineering tool in today's …