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Optical evidence of an enhanced electronic effective mass in the anomalous Pb1−xTlxTe superconductor

A. Pal, M. Chinotti, L. Degiorgi, P. Walmsley, I. R. Fisher

DOI 10.1103/PhysRevMaterials.3.054801 · Physical Review Materials

T1

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Abstract

The narrow band-gap semiconductor PbTe exhibits a number of striking properties upon thallium (Tl)-doping, including the onset of superconductivity at temperatures Tc which are substantially higher than for materials with equivalent charge carrier concentration. Here we provide a thorough optical investigation of Pb1−xTlxTe over a very broad spectral range and contrast its normal-state, complete excitation spectrum with the optical response of the nonsuperconducting analog Na-doped PbTe. We capture the relevant energy scales shaping their electronic structure and uncover the formation of an impurity band upon doping with Tl, which evolves into a resonant state for large doping. This implies a large density of states and an enhancement of the optical effective mass m*/me of the itinerant charge carriers, which is stronger for Tl- than for Na-doping. Since the enhancement of m*/me particularly occurs upon crossing a critical concentration xc in Tl-doped PbTe for which Tc≠ 0, we advance its relevance for the onset of superconductivity.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
Pb1-xTlxTe

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1.4Pressure not reportedunknown

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