Magnetic Anisotropy of Single Mn Acceptors in GaAs in an External Magnetic Field
arXiv:1304.3303 · doi:10.1103/PhysRevB.88.205203
Abstract
We investigate the effect of an external magnetic field on the physical properties of the acceptor hole states associated with single Mn acceptors placed near the (110) surface of GaAs. Crosssectional scanning tunneling microscopy images of the acceptor local density of states (LDOS) show that the strongly anisotropic hole wavefunction is not significantly affected by a magnetic field up to 6 T. These experimental results are supported by theoretical calculations based on a tightbinding model of Mn acceptors in GaAs. For Mn acceptors on the (110) surface and the subsurfaces immediately underneath, we find that an applied magnetic field modifies significantly the magnetic anisotropy landscape. However the acceptor hole wavefunction is strongly localized around the Mn and the LDOS is quite independent of the direction of the Mn magnetic moment. On the other hand, for Mn acceptors placed on deeper layers below the surface, the acceptor hole wavefunction is more delocalized and the corresponding LDOS is much more sensitive on the direction of the Mn magnetic moment. However the magnetic anisotropy energy for these magnetic impurities is large (up to 15 meV), and a magnetic field of 10 T can hardly change the landscape and rotate the direction of the Mn magnetic moment away from its easy axis. We predict that substantially larger magnetic fields are required to observe a significant field-dependence of the tunneling current for impurities located several layers below the GaAs surface.
None
References in corpus (5)
- Atom-by-Atom Substitution of Mn in GaAs and Visualization of their Hole-Mediated Interactions
- Spatial structure of an individual Mn acceptor in GaAs
- Optically probing the fine structure of a single Mn atom in an InAs quantum dot
- Multiband tight-binding model of local magnetism in GaMnAs
- Spin-orientation-dependent spatial structure of a magnetic acceptor state in a zincblende semiconductor
Cited by in corpus (4)
- Spatial Metrology of Dopants in Silicon with Exact Lattice Site Precision
- Electronic structure and magnetic properties of Mn and Fe impurities near GaAs (110) surface
- Trend of the magnetic anisotropy for individual Mn dopants near the (110) GaAs surface
- Electric manipulation of the Mn-acceptor binding energy and the Mn-Mn exchange interaction on the GaAs (110) surface by nearby As vacancies