Temperature-driven band inversion in Pb$_{0.77}$Sn$_{0.23}$Se: Optical and Hall-effect studies

ORAL

Abstract

Optical and Hall-effect measurements have been performed on single crystals of Pb$_{0.77}$Sn$_{0.23}$Se, a IV-VI mixed chalcogenide. The temperature dependent (10-300 K) reflectance was measured over 40-7000 cm$^{-1}$ (5-870 meV) with an extension to 15,500 cm$^{-1}$ (1.92 eV) at room temperature. The reflectance was fit to the Drude-Lorentz model using a single Drude component and several Lorentz oscillators. The optical properties at the measured temperatures were estimated via Kramers-Kronig analysis as well as by the Drude-Lorentz fit. The carriers were p-type with the carrier density determined by Hall measurements. A signature of valence intraband transition is found in the low-energy optical spectra. It is found that the valence-conduction band transition energy as well as the free carrier effective mass reach minimum values at 100 K, suggesting temperature-driven band inversion in the material. Some of the results from optical studies were compared with density function theory calculations.

Authors

  • Naween Anand

    • Univ of Florida - Gainesville, FL
  • Zhiguo Chen

    • NHMFL Florida State University, Tallahassee, FL
  • Sanal Buvaev

    • Univ of Florida - Gainesville, FL
  • C. Martin

    • Ramapo college, Mahwah, NJ
  • Kamal Choudhary

    • Univ of Florida - Gainesville, FL
  • Genda Gu

    • Brookhaven National Lab
    • Brookhaven National Laboratory
    • Condensed Matter Physics and Materials Science Department, Brookhaven National Laboratory, NY 11973, USA
    • Brookhaven Natl Lab
    • BNL
    • Department of Physics, Brookhaven National Laboratory
    • Brookhaven National Lab, Upton, NY
    • University of Colorado at Boulder
  • Susan Sinnott

    • Univ of Florida - Gainesville, FL
    • University of Florida
  • Zhiqiang Li

    • NHMFL Florida State University, Tallahassee, FL
  • A. Hebard

    • University of Florida
    • Univ of Florida - Gainesville, FL
  • D. Tanner

    • Univ of Florida - Gainesville, FL