New Candidates for Topological Insulators : Pb-based chalcogenide series

Abstract

Here, we theoretically predict that the series of Pb-based layered chalcogenides, PbnBi2Sen+3 and PbnSb2Ten+3, are possible new candidates for topological insulators. As n increases, the phase transition from a topological insulator to a band insulator is found to occur between n=2 and 3 for both series. Significantly, among the new topological insulators, we found a bulk band gap of 0.40eV in PbBi2Se4 which is one of the largest gap topological insulators, and that Pb2Sb2Te5 is located in the immediate vicinity of the topological phase boundary, making its topological phase easily tunable by changing external parameters such as lattice constants. Due to the three-dimensional Dirac cone at the phase boundary, massless Dirac fermions also may be easily accessible in Pb2Sb2Te5.

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