Magnetism-induced massive Dirac spectra and topological defects in the surface state of Cr-doped BiSe-bilayer topological insulators
arXiv:1506.06841 · doi:10.1088/1367-2630/17/11/113042
Abstract
Proximity-induced magnetic effects on the surface Dirac spectra of topological insulators are investigated by scanning tunneling spectroscopic (STS) studies of bilayer structures consisting of undoped Bi2Se3 thin films on top of Cr-doped Bi2Se3 layers. For thickness of the top Bi2Se3 layer equal to or smaller than 3 quintuple layers (QL), a spatially inhomogeneous surface spectral gap Δopens up below T_c^{2D}, which is much higher than the bulk Curie temperature T_c^{3D}. The mean value and spatial homogeneity of the gap Δgenerally increase with increasing c-axis magnetic field (H) and increasing Cr doping level (x), suggesting that the physical origin of this surface gap is associated with proximity-induced c-axis ferromagnetism. On the other hand, the temperature (T) dependence of Δis non-monotonic, showing an initial increase below T_c^{2D} followed by a dip and then reaching maximum at T << T_c^{3D}. These phenomena may be attributed to proximity magnetism induced by two types of contributions with different temperature dependence: a 3D contribution from the bulk magnetism that dominates at low T, and a 2D contribution associated with the RKKY interactions mediated by surface Dirac fermions, which dominates at T_c^{3D} << T < T_c^{2D}. Additionally, spatially localized sharp resonant spectra are found along the boundaries of gapped and gapless regions. These spectral resonances are long-lived at H = 0 and become suppressed under strong c-axis magnetic fields, and are attributed to magnetic impurity-induced topological defects in the spin texture of surface Dirac fermions.
Manuscript 14 pages, 6 figures. Supplementary Information 7 pages. Accepted for publication in New Journal of Physics (2015)
References in corpus (14)
- Superconducting proximity effect and Majorana fermions at the surface of a topological insulator
- Topological Insulators with Inversion Symmetry
- Experimental Observation of the Quantum Anomalous Hall Effect in a Magnetic Topological Insulator
- Topological Field Theory of Time-Reversal Invariant Insulators
- New directions in the pursuit of Majorana fermions in solid state systems
- Quantized Anomalous Hall Effect in Magnetic Topological Insulators
- Hedgehog Spin-texture and Berry's Phase tuning in a Magnetic Topological Insulator
- Surface quantized anomalous Hall current and magneto-electric effect in magnetically disordered topological insulators
- Imaging Dirac-Mass Disorder from Magnetic Dopant-Atoms in the Ferromagnetic Topological Insulator Cr(BiSb)Te
- Ordering of magnetic impurities and tunable electronic properties of topological insulators
- Chemical potential dependent gap-opening at the Dirac surface states of Bi2Se3 induced by aggregated substitutional Cr atoms
- Surface magnetic ordering in topological insulators with bulk magnetic dopants
- Filling of magnetic-impurity-induced gap in topological insulators by potential scattering
- Observation of Fermi-energy dependent unitary impurity resonances in a strong topological insulator Bi2Se3 with scanning tunneling spectroscopy
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- Correlated disorder induced anomalous transport in magnetically doped topological insulators
- Robust quantum anomalous Hall effect with spatially uncorrelated disorder