Inelastic magnetic scattering effect on LDOS of topological insulators
arXiv:1210.2222 · doi:10.1103/PhysRevB.86.245426
Abstract
Magnetic ions such as Fe, Mn and Co with localized spins may be adsorbed on the surface of topological insulators like \Bi. They form scattering centers for the helical surface states which have a Dirac cone dispersion as long as the local spins are disordered. However, the local density of states (LDOS) may be severely modified by the formation of bound states. Commonly only elastic scattering due to normal and exchange potentials of the adatom is assumed. Magnetization measurements show, however, that considerable magnetic single ion anisotropies exist which lead to a splitting of the local impurity spin states resulting in a singlet ground state. Therefore inelastic scattering processes of helical Dirac electrons become possible as described by a dynamical local self energy of second order in the exchange interaction. The self energy influences bound state formation and leads to significant new anomalies in the LDOS at low energies and low temperatures which we calculate within T-matrix approach. We propose that they may be used for spectroscopy of local impurity spin states by appropriate tuning of chemical potential and magnetic field.
10 pages, 9 figures; published version; Fig.9b and five references added
References in corpus (6)
- Topological Insulators with Inversion Symmetry
- Gate-Voltage Control of Chemical Potential and Weak Anti-localization in Bismuth Selenide
- Bulk Band Gap and Surface State Conduction Observed in Voltage-Tuned Crystals of the Topological Insulator BiSe
- In-plane magnetic anisotropy of Fe atoms on BiSe(111)
- Stationary phase approximation approach to the quasiparticle interference on the surface of a strong topological insulator
- Topological insulator ribbon: Surface states and dynamical response