A Hirohata, DC Lloyd, T Kubota, T Seki… - IEEE …, 2023 - ieeexplore.ieee.org
Spintronic devices are expected to replace the recent nanoelectronic memories and sensors due to their efficiency in energy consumption and functionality with scalability. To date …
We study magnon transmission in the sandwich structure of ferromagnetic insulators (FMIs), antiferromagnetic insulators (AFMI), and ferromagnetic insulators (FMI) by atomistic spin …
GR Hoogeboom, GJNS Nicolaas, A Alexander… - Physical Review B, 2021 - APS
In spin-transport experiments with spin currents propagating through an antiferromagnetic (AFM) material, the antiferromagnet is mainly treated as a passive spin conductor not …
We present spin transport studies on a low-field, room-temperature magnetoelectric multiferroic polycrystalline Sr 3 Co 2 Fe 24 O 41| Pt heterostructure wherein a highly tunable …
PG Li, JM Liang, SM Ng, HF Wong, Y Zhou… - Journal of Magnetism …, 2024 - Elsevier
Rare-earth ion garnets (ReIG) with magnetization compensation are being extensively studied, such as in the ferrimagnetic insulator (FMI)/heavy metal (HM) heterostructures, with …
The active manipulation of quasiparticles, other than electrons, is a feasible alternative for developing the next generation of devices for information processing. Exploring magnons is …
Orthoferrites (R FeO 3) containing rare-earth (R) elements are 3D antiferromagnets (AFMs) that exhibit characteristic weak ferromagnetism originating due to slight canting of the spin …
Spintronic devices are expected to replace the recent nanoelectronic memories and sensors due to their efficiency in energy consumption and functionality with scalability. To date …