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The magnetic genome of two-dimensional van der Waals materials
Magnetism in two-dimensional (2D) van der Waals (vdW) materials has recently emerged as
one of the most promising areas in condensed matter research, with many exciting emerging …
one of the most promising areas in condensed matter research, with many exciting emerging …
Emergent phenomena and proximity effects in two-dimensional magnets and heterostructures
Ultrathin van der Waals materials and their heterostructures offer a simple, yet powerful
platform for discovering emergent phenomena and implementing device structures in the …
platform for discovering emergent phenomena and implementing device structures in the …
Giant tunneling magnetoresistance in spin-filter van der Waals heterostructures
Magnetic multilayer devices that exploit magnetoresistance are the backbone of magnetic
sensing and data storage technologies. Here, we report multiple-spin-filter magnetic tunnel …
sensing and data storage technologies. Here, we report multiple-spin-filter magnetic tunnel …
Reversible switching of interlayer exchange coupling through atomically thin VO2 via electronic state modulation
Modulation of electronic properties in spintronic interfaces (spinterfaces) can give rise to the
optimization and even emergence of abundant spintronic effects. However, a proof-of …
optimization and even emergence of abundant spintronic effects. However, a proof-of …
Spin tunnel field-effect transistors based on two-dimensional van der Waals heterostructures
A transistor based on spin rather than charge—a spin transistor—could potentially offer non-
volatile data storage and improved performance compared with traditional transistors. Many …
volatile data storage and improved performance compared with traditional transistors. Many …
Electric‐field‐controlled antiferromagnetic spintronic devices
In recent years, the field of antiferromagnetic spintronics has been substantially advanced.
Electric‐field control is a promising approach for achieving ultralow power spintronic devices …
Electric‐field control is a promising approach for achieving ultralow power spintronic devices …
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 …
Layer-Number-Dependent Magnetism in the Co-Doped van der Waals Ferromagnet Fe3GaTe2
Recently, van der Waals (vdW) antiferromagnets have been proposed to be crucial for
spintronics due to their favorable properties compared to ferromagnets, including robustness …
spintronics due to their favorable properties compared to ferromagnets, including robustness …
Ionic liquid gating control of RKKY interaction in FeCoB/Ru/FeCoB and (Pt/Co)2/Ru/(Co/Pt)2 multilayers
To overcome the fundamental challenge of the weak natural response of antiferromagnetic
materials under a magnetic field, voltage manipulation of antiferromagnetic interaction is …
materials under a magnetic field, voltage manipulation of antiferromagnetic interaction is …
Unconventional interlayer exchange coupling via chiral phonons in synthetic magnetic oxide heterostructures
Chiral symmetry breaking of phonons plays an essential role in emergent quantum
phenomena owing to its strong coupling to spin degree of freedom. However, direct …
phenomena owing to its strong coupling to spin degree of freedom. However, direct …