TY - JOUR A1 - Assaad, F. F. A1 - Bercx, M. A1 - Hohenadler, M. T1 - Topological Invariant and Quantum Spin Models from Magnetic pi Fluxes in Correlated Topological Insulators JF - Physical Review X N2 - The adiabatic insertion of a \(\pi\) flux into a quantum spin Hall insulator gives rise to localized spin and charge fluxon states. We demonstrate that \(\pi\) fluxes can be used in exact quantum Monte Carlo simulations to identify a correlated \(Z_2\) topological insulator using the example of the Kane-Mele-Hubbard model. In the presence of repulsive interactions, a \(\pi\) flux gives rise to a Kramers doublet of spin-fluxon states with a Curie-law signature in the magnetic susceptibility. Electronic correlations also provide a bosonic mode of magnetic excitons with tunable energy that act as exchange particles and mediate a dynamical interaction of adjustable range and strength between spin fluxons. \(\pi\) fluxes can therefore be used to build models of interacting spins. This idea is applied to a three-spin ring and to one-dimensional spin chains. Because of the freedom to create almost arbitrary spin lattices, correlated topological insulators with \(\pi\) fluxes represent a novel kind of quantum simulator, potentially useful for numerical simulations and experiments. KW - topological insulators KW - strongly correlated materials Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-129849 VL - 3 IS - 1 ER - TY - JOUR A1 - Bareille, C. A1 - Fortuna, F. A1 - Rödel, T. C. A1 - Bertran, F. A1 - Gabay, M. A1 - Hijano Cubelos, O. A1 - Taleb-Ibrahimi, A. A1 - Le Fèvre, P. A1 - Bibes, M. A1 - Barthelemy, A. A1 - Maroutian, T. A1 - Lecoeur, P. A1 - Rozenberg, M. J. A1 - Santander-Syro, A. F. T1 - Two-dimensional electron gas with six-fold symmetry at the (111) surface of KTaO3 JF - Scientific Reports N2 - Two-dimensional electron gases (2DEGs) at transition-metal oxide (TMO) interfaces, and boundary states in topological insulators, are being intensively investigated. The former system harbors superconductivity, large magneto-resistance, and ferromagnetism. In the latter, honeycomb-lattice geometry plus bulk spin-orbit interactions lead to topologically protected spin-polarized bands. 2DEGs in TMOs with a honeycomb-like structure could yield new states of matter, but they had not been experimentally realized, yet. We successfully created a 2DEG at the (111) surface of KTaO3, a strong insulator with large spin-orbit coupling. Its confined states form a network of weakly-dispersing electronic gutters with 6-fold symmetry, a topology novel to all known oxide-based 2DEGs. If those pertain to just one Ta-(111) bilayer, model calculations predict that it can be a topological metal. Our findings demonstrate that completely new electronic states, with symmetries not realized in the bulk, can be tailored in oxide surfaces, promising for TMO-based devices. KW - LAALO3/SRTIO3 interfaces KW - topological insulators KW - superconductivity KW - oxides KW - SRTIO3 Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-117703 SN - 2045-2322 VL - 4 ER - TY - JOUR A1 - Brüne, Christoph A1 - Thienel, Cornelius A1 - Stuiber, Michael A1 - Böttcher, Jan A1 - Buhmann, Hartmut A1 - Novik, Elena G. A1 - Liu, Chao-Xing A1 - Hankiewicz, Ewelina M. A1 - Molenkamp, Laurens W. T1 - Dirac-Screening Stabilized Surface-State Transport in a Topological Insulator JF - Physical Review X N2 - We report magnetotransport studies on a gated strained HgTe device. This material is a three-dimensional topological insulator and exclusively shows surface-state transport. Remarkably, the Landau-level dispersion and the accuracy of the Hall quantization remain unchanged over a wide density range (3×1011  cm−2