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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 …
Correlated Quantum Phenomena of Spin–Orbit Coupled Perovskite Oxide Heterostructures: Cases of SrRuO3 and SrIrO3 Based Artificial Superlattices
Unexpected, yet useful functionalities emerge when two or more materials merge
coherently. Artificial oxide superlattices realize atomic and crystal structures that are not …
coherently. Artificial oxide superlattices realize atomic and crystal structures that are not …
Over 5 × 103-Fold Enhancement of Responsivity in Ga2O3-Based Solar Blind Photodetector via Acousto–Photoelectric Coupling
Q Zhang, D Dong, T Zhang, T Zhou, Y Yang, Y Tang… - ACS …, 2023 - ACS Publications
The emergence of the wide-band-gap semiconductor Ga2O3 has propelled it to the forefront
of solar blind detection activity owing to its key features. Although various architectures and …
of solar blind detection activity owing to its key features. Although various architectures and …
Large intrinsic anomalous Hall effect in SrIrO3 induced by magnetic proximity effect
The anomalous Hall effect (AHE) is an intriguing transport phenomenon occurring typically
in ferromagnets as a consequence of broken time reversal symmetry and spin-orbit …
in ferromagnets as a consequence of broken time reversal symmetry and spin-orbit …
Direct Observation of Strong Anomalous Hall Effect and Proximity‐Induced Ferromagnetic State in SrIrO3
The 5d iridium‐based transition metal oxides have gained broad interest because of their
strong spin–orbit coupling, which favors new or exotic quantum electronic states. On the …
strong spin–orbit coupling, which favors new or exotic quantum electronic states. On the …
Correlation-driven eightfold magnetic anisotropy in a two-dimensional oxide monolayer
Engineering magnetic anisotropy in two-dimensional systems has enormous scientific and
technological implications. The uniaxial anisotropy universally exhibited by two-dimensional …
technological implications. The uniaxial anisotropy universally exhibited by two-dimensional …
Interface-related phenomena in epitaxial complex oxide ferroics across different thin film platforms: opportunities and challenges
Interfaces in complex oxides give rise to fascinating new physical phenomena arising from
the interconnected spin, lattice, charge and orbital degrees of freedom. Most commonly …
the interconnected spin, lattice, charge and orbital degrees of freedom. Most commonly …
Interfacial oxygen-octahedral-tilting-driven electrically tunable topological Hall effect in ultrathin SrRuO3 films
Topological spin textures as an emerging class of topological matter offer a medium for
information storage and processing. The recently discovered topological Hall effect (THE) is …
information storage and processing. The recently discovered topological Hall effect (THE) is …
Manipulation of perpendicular magnetization via magnon current with tilted polarization
Field-free switching of perpendicular magnetization driven by magnons is a promising
technology that can significantly reduce energy dissipation and potential damage to …
technology that can significantly reduce energy dissipation and potential damage to …
Emergent electric field control of phase transformation in oxide superlattices
Electric fields can transform materials with respect to their structure and properties, enabling
various applications ranging from batteries to spintronics. Recently electrolytic gating, which …
various applications ranging from batteries to spintronics. Recently electrolytic gating, which …