English

Robust narrow-gap semiconducting behavior in square-net La$_{3}$Cd$_{2}$As$_{6}$

Materials Science 2021-08-19 v1 Strongly Correlated Electrons

Abstract

ABSTRACT: Narrow-gap semiconductors are sought-after materials due to their potential for long-wavelength detectors, thermoelectrics, and more recently non-trivial topology. Here we report the synthesis and characterization of a new family of narrow-gap semiconductors, RR3_{3}Cd2_{2}As6_{6} (R=R= La, Ce). Single crystal x-ray diffraction at room temperature reveals that the As square nets distort and Cd vacancies order in a monoclinic superstructure. A putative charge-density ordered state sets in at 279~K in La3_{3}Cd2_{2}As6_{6} and at 136~K in Ce3_{3}Cd2_{2}As6_{6} and is accompanied by a substantial increase in the electrical resistivity in both compounds. The resistivity of the La member increases by thirteen orders of magnitude on cooling, which points to a remarkably clean semiconducting ground state. Our results suggest that light square net materials within a I4/mmmI4/mmm parent structure are promising clean narrow-gap semiconductors.

Keywords

Cite

@article{arxiv.2108.08006,
  title  = {Robust narrow-gap semiconducting behavior in square-net La$_{3}$Cd$_{2}$As$_{6}$},
  author = {Mario M. Piva and Marein C. Rahn and Sean M. Thomas and Brian L. Scott and Pascoal G. Pagliuso and Joe D. Thompson and Leslie M. Schoop and Filip Ronning and Priscila F. S. Rosa},
  journal= {arXiv preprint arXiv:2108.08006},
  year   = {2021}
}
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