Surface-state-dominated transport in crystals of the topological crystalline insulator In-doped Pb₁₋ₓSnₓTe
Zhong, Ruidan · He, Xugang · Schneeloch, John A. · Zhang, Cheng · Liu, Tiansheng · Pletikosic, Ivo · Li, Qiang · Ku, Wei · Valla, Tonica · Tranquada, J. M. · Gu, Genda
Original · EN
Three-dimensional topological insulators and topological crystalline insulators represent new quantum states of matter, which are predicted to have insulating bulk states and spin-momentum-locked gapless surface states. Experimentally, it has proven difficult to achieve the high bulk resistivity that would allow surface states to dominate the transport properties over a substantial temperature range. Here we report a series of indium-doped Pb₁₋ₓSnₓTe compounds that manifest huge bulk resistivities together with strong evidence of topological surface states, based on thickness-dependent transport studies and magnetoresistance measurements. For these bulk-insulating materials, the surface states determine the resistivity for temperatures approaching 30 K.
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