RMT Araujo, J Zarpellon… - Journal of Physics D …, 2022 - iopscience.iop.org
The aim of this work is to present an overview and a critical discussion on two-dimensional materials and functional nanostructures exhibiting ferromagnetic and antiferromagnetic long …
V Kataev, B Büchner, A Alfonsov - Applied Magnetic Resonance, 2024 - Springer
The field of research on magnetic van der Waals compounds—a special subclass of quasi- two-dimensional materials—is currently rapidly expanding due to the relevance of these …
C Dai, F Ma - Applied Physics Letters, 2021 - pubs.aip.org
A synthetic antiferromagnet, composed of two ferromagnetic layers separated by a non- magnetic layer, possesses two uniform precession resonance modes: in-phase acoustic …
Ultrafast laser excitations provide an efficient and low-power consumption alternative since different magnetic properties and topological spin states can be triggered and manipulated …
D Abdul-Wahab, E Iacocca, RFL Evans… - Applied Physics …, 2021 - pubs.aip.org
Domain wall motion is in the core of many information technologies ranging from storage [Beach et al., J. Magn. Magn. Mater. 320, 1272–1281 (2008)], processing [Tatara et al., Phys …
Magnetism in reduced dimensionalities is of great fundamental interest while also providing perspectives for applications of materials with novel functionalities. In particular, spin …
The coherent spin waves, magnons, can propagate without accompanying charge transports and Joule heat dissipation. Room-temperature and long-distance spin waves …
Bosonic Dirac materials are testbeds for dissipationless spin-based electronics. In the quasi two-dimensional honeycomb lattice of CrX3 (X= Cl, Br, I), Dirac magnons have been …