We study transport properties and topological phase transition in two-dimensional interacting disordered systems. We derive the Hall conductance within real-space dynamical mean-field theory, which is quantized and serves as a topological invariant for insulators, even when the energy gap is closed by localized states. In the spinful Harper-Hofstadter-Hatsugai model, in the trivial insulator regime, we find that the repulsive on-site interaction can assist weak disorder to induce the integer quantum Hall effect, while in the topologically nontrivial regime, it impedes Anderson localization. Generally, the interaction broadens the regime of the topological phase in the disordered system.
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Bar Ilan Univ, Jack & Pearl Resnick Inst, Dept Phys, IL-52900 Ramat Gan, IsraelBar Ilan Univ, Jack & Pearl Resnick Inst, Dept Phys, IL-52900 Ramat Gan, Israel
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IIMDEA Nanosci, Faraday 9, Madrid 28049, SpainIIMDEA Nanosci, Faraday 9, Madrid 28049, Spain
Pantaleon, Pierre A.
Phong, Vo Tien
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Univ Penn, Dept Phys & Astron, Philadelphia, PA 19104 USAIIMDEA Nanosci, Faraday 9, Madrid 28049, Spain
Phong, Vo Tien
Naumis, Gerardo G.
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Univ Nacl Autonoma Mexico, Dept Sistemas Complejos, Inst Fis, Apdo Postal 20-364, Mexico City 01000, MexicoIIMDEA Nanosci, Faraday 9, Madrid 28049, Spain
Naumis, Gerardo G.
Guinea, Francisco
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IIMDEA Nanosci, Faraday 9, Madrid 28049, Spain
Donostia Int Phys Ctr, Paseo Manuel Lardizabal 4, San Sebastian 20018, Spain
Ikerbasque, Basque Fdn Sci, Bilbao 48009, SpainIIMDEA Nanosci, Faraday 9, Madrid 28049, Spain