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Electrochemistry in magnetic fields
Develo** new strategies to advance the fundamental understanding of electrochemistry is
crucial to mitigating multiple contemporary technological challenges. In this regard …
crucial to mitigating multiple contemporary technological challenges. In this regard …
Challenges in identifying chiral spin textures via the topological Hall effect
Chiral spin textures such as skyrmions are of interest to the field of spintronics for their
potential use in future computing devices. Hall effect measurements are a simple and …
potential use in future computing devices. Hall effect measurements are a simple and …
Large Anomalous Nernst Effects at Room Temperature in Fe3Pt Thin Films
Heat current in ferromagnets can generate a transverse electric voltage perpendicular to
magnetization, known as anomalous Nernst effect (ANE). ANE originates intrinsically from …
magnetization, known as anomalous Nernst effect (ANE). ANE originates intrinsically from …
Gate‐tunable Berry curvature in van der Waals itinerant ferromagnetic Cr7Te8
The anomalous Hall effect (AHE) that associated with the Berry curvature of occupied
electronic states in momentum‐space is one of the intriguing aspects in condensed matter …
electronic states in momentum‐space is one of the intriguing aspects in condensed matter …
Crystal Hall and crystal magneto-optical effect in thin films of SrRuO3
Motivated by the recently observed topological Hall effect in ultra-thin films of SrRuO 3
(SRO) grown on the SrTiO 3 [001] substrate, we investigate the magnetic ground state and …
(SRO) grown on the SrTiO 3 [001] substrate, we investigate the magnetic ground state and …
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 …
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 …
An overview of SrRuO3-based heterostructures for spintronic and topological phenomena
Abstract SrRuO 3 (SRO)-based heterostructures have attracted much attention for potential
applications such as electrodes, oxide spintronics, topological electronics and …
applications such as electrodes, oxide spintronics, topological electronics and …
Ru‐Do**‐Induced Spin Frustration and Enhancement of the Room‐Temperature Anomalous Hall Effect in La2/3Sr1/3MnO3 Films
In transition‐metal‐oxide heterostructures, the anomalous Hall effect (AHE) is a powerful
tool for detecting the magnetic state and revealing intriguing interfacial magnetic orderings …
tool for detecting the magnetic state and revealing intriguing interfacial magnetic orderings …
Reversal of Anomalous Hall Effect and Octahedral Tilting in SrRuO3 Thin Films via Hydrogen Spillover
The perovskite SrRuO3 (SRO) is a strongly correlated oxide whose physical and structural
properties are strongly intertwined. Notably, SRO is an itinerant ferromagnet that exhibits a …
properties are strongly intertwined. Notably, SRO is an itinerant ferromagnet that exhibits a …