Optical properties of TlNi2Se2: Observation of pseudogap formation

Abstract

The quasi-two-dimensional nickel chalcogenides TlNi2Se2 is a newly discovered superconductor. We have performed optical spectroscopy study on TlNi2Se2 single crystals over a broad frequency range at various temperatures. The overall optical reflectance spectra are similar to those observed in its isostructure BaNi2As2. Both the suppression in R(ω) and the peaklike feature in σ1(ω) suggest the progressive formation of a pseudogap feature in the midinfrared range with decreasing temperatures, which might be originated from the dynamic local fluctuation of charge-density-wave (CDW) instability. We propose that the CDW instability in TlNi2Se2 is driven by the saddle points mechanism, due to the existence of van Hove singularity very close to the Fermi energy.

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