Observation of band structure and density of states effects in Co-based magnetic tunnel junctions
arXiv:cond-mat/0107569 · doi:10.1103/PhysRevLett.88.107201
Abstract
Utilizing Co/AlO/Co magnetic tunnel junctions (MTJs) with Co electrodes of different crystalline phases, a clear relationship between electrode structure and junction transport properties is presented. For junctions with one fcc(111) textured and one polycrystalline (poly-phase and poly-directional) Co electrode, a strong asymmetry is observed in the magnetotransport properties, while when both electrodes are polycrystalline the magnetotransport is essentially symmetric. These observations are successfully explained within a model based on ballistic tunneling between the calculated band structures (DOS) of fcc-Co and hcp-Co.
4 pages, 3 figures, submitted to Phys. Rev. Lett
Cited by in corpus (7)
- Spintronics: Fundamentals and applications
- Magnetoresistance of vertical Co-graphene-NiFe junctions controlled by charge transfer and proximity-induced spin splitting in graphene
- Spin tunneling in junctions with disordered ferromagnets
- Nonmonotonic bias dependence of local spin accumulation signals in ferromagnet/semiconductor lateral spin-valve devices
- Magnon and phonon assisted tunneling in a high-magnetoresistance tunnel junction using CoFe ferromagnetic electrodes
- Bias-voltage dependence of the magneto-resistance in ballistic vacuum tunneling: Theory and application to planar Co(0001) junctions
- Interfacial Effects of Al-Termination on Spin Transport in Magnetic Tunnel Junctions