Spin pumping has been considered a powerful tool to manipulate the spin current in a ferromagnetic/nonmagnetic (FM/NM) system, where the NM part exhibits large spin–orbit …
The rise of three-dimensional topological insulators as an attractive playground for the observation and control of various spin-orbit effects has ushered in the field of topological …
Spin–orbit coupling (SOC) plays a crucial role in spin-to-charge interconversion in ferromagnet (FM)–heavy metal (HM) heterostructures. The SOC of a heavy metal strongly …
Graphene/ferromagnet hybrid heterostructures are important building blocks of spintronics due to the unique ability of graphene to transport spin current over unprecedented distances …
The spin-pumping behavior in the as-deposited and post-deposition annealed (at 400 C) Co 60 Fe 20 B 20/Molybdenum (CoFeB/Mo) heterostructures is investigated. It is found that …
Materials with high spin–orbit coupling (SOC) are a prerequisite for the realization of spin– orbit torque-based magnetic memories. Transition metal dichalcogenides (TMDs) are an apt …
Topological insulators with high spin–orbit coupling and helically spin-momentum-locked topological surface states (TSSs) can serve as efficient spin current generators for modern …
Abstract Spin–orbit coupling (SOC), the interaction between spin and orbital angular momentum of electrons, is imperative to control magnetic properties of nonmagnet …
Layered transition metal dichalcogenides (TMDs) have shown commendable properties for spintronic applications. From the device perspective, the structural quality of the TMD as well …