One Analytical Approach of Rashba-Edelstein Magnetoresistance in 2D Materials
arXiv:2210.03854 · doi:10.1140/epjb/s10051-023-00516-z
Abstract
We study analytically the Rashba-Edelstein magnetoresistance (REMR) in a structure made from an insulator ferromagnet, such as yttrium iron garnet (YIG), and a 2D material (2DM) with direct and inverse Rashba-Edelstein effects, such as SLG and MoS. Our results represent an efficient way of analyzing the Rashba-Edelstein effects.
References in corpus (5)
- Spin Seebeck insulator
- Emergent Phenomena Induced by Spin-Orbit Coupling at Surfaces and Interfaces
- Magnetic Moment Formation in Graphene Detected by Scattering of Pure Spin Currents
- Magnetic damping modulation in via the magnetic spin Hall effect
- Dirac-Surface-State-Dominated Spin to Charge Current Conversion in the Topological Insulator Films at Room Temperature