• DocumentCode
    20432
  • Title

    Electrodynamics of the Superconducting State in Ultra-Thin Films at THz Frequencies

  • Author

    Pracht, Uwe S. ; Heintze, Eric ; Clauss, Carsten ; Hafner, David ; Bek, R. ; Werner, David ; Gelhorn, S. ; Scheffler, Marc ; Dressel, Martin ; Sherman, Daniel ; Gorshunov, Boris ; Il´in, K.S. ; Henrich, Dagmar ; Siegel, Mel

  • Author_Institution
    Phys. Inst. Univ. Stuttgart, Stuttgart, Germany
  • Volume
    3
  • Issue
    3
  • fYear
    2013
  • fDate
    May-13
  • Firstpage
    269
  • Lastpage
    280
  • Abstract
    In this paper, we report on terahertz frequency-domain spectroscopy (THz-FDS) experiments in which we measure charge carrier dynamics and excitations of thin-film superconducting systems at low temperatures in the THz spectral range. The characteristics of the set-up and the experimental procedures are described comprehensively. We discuss the single-particle density of states and a theory of electrodynamic absorption and optical conductivity of conventional superconductors. We present the experimental performance of the setup at low temperatures for a broad spectral range from 3 to 38 cm-1 (0.1-1.1 THz) by the example of ultra-thin films of weakly disordered superconductors niobium nitride (NbN) and tantalum nitride (TaN) with different values of critical temperatures Tc . Furthermore, we analyze and interpret our experimental data within the framework of conventional Bardeen-Cooper-Schrieffer (BCS) theory of superconductivity. By and large, we find the properties of our NbN and TaN thin films to be well described by the theory. Our results on NbN resemble tendencies towards anomalous behavior of the ratio 2Δ(0)/kBTc as a function of Tc .
  • Keywords
    BCS theory; carrier mobility; electrodynamics; niobium compounds; optical conductivity; superconducting energy gap; superconducting thin films; superconducting transition temperature; superconducting transitions; tantalum compounds; terahertz wave spectra; Bardeen-Cooper-Schrieffer theory; NbN; TaN; charge carrier dynamics; critical temperatures; disordered superconductors; electrodynamic absorption; electrodynamics; frequency 0.1 THz to 1.1 THz; niobium nitride; optical conductivity; single-particle density-of-states; superconducting ultrathin films; superconductor-insulator transition; tantalum nitride; terahertz frequency-domain spectroscopy; Bardeen-Cooper-Schrieffer (BCS) theory; density of states of a superconductor; frequency-domain THz spectroscopy (THz-FDS); niobium nitride (NbN); optical conductivity of superconductors; superconducting thin films; superconductor-insulator transition (SIT); tantalum nitride (TaN);
  • fLanguage
    English
  • Journal_Title
    Terahertz Science and Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    2156-342X
  • Type

    jour

  • DOI
    10.1109/TTHZ.2013.2255047
  • Filename
    6497687