Detection of the spin character of Fe(001) surface states by scanning tunneling microscopy: A theoretical proposal
arXiv:0809.3456 · doi:10.1103/PhysRevB.79.165423
Abstract
We consider the magnetic structure on the Fe(001) surface and theoretically study the scanning tunneling spectroscopy using a spin-polarized tip (SP-STM). We show that minority-spin surface states induce a strong bias dependence of the tunneling differential conductance which largely depends on the orientation of the magnetization in the SP-STM tip relative to the easy magnetization axis in the Fe(001) surface. We propose to use this effect in order to determine the spin character of the Fe(001) surface states. This technique can be applied also to other magnetic surfaces in which surface states are observed.
5 pages, 4 figures
References in corpus (5)
- Tunneling anisotropic magnetoresistance driven by resonant surface states: First-principles calculations of Fe(001) surface
- Reversal of spin polarization in Fe/GaAs (001) driven by resonant surface states: First-principles calculations
- Detection of spin reversal and nutations through current measurements
- Subnanosecond switching of local spin-exchange coupled to ferromagnets
- Ab-initio calculations of spin tunneling through an indirect barrier