• DocumentCode
    1547674
  • Title

    Optimization of RF- and DC-sputtered NbTiN films for integration with Nb-based SIS junctions

  • Author

    Iosad, N.N. ; Jackson, B.D. ; Klapwijk, T.M. ; Polyakov, S.N. ; Dmitirev, P.N. ; Gao, J.R.

  • Author_Institution
    Dept. of Appl. Phys., Groningen Univ., Netherlands
  • Volume
    9
  • Issue
    2
  • fYear
    1999
  • fDate
    6/1/1999 12:00:00 AM
  • Firstpage
    1716
  • Lastpage
    1719
  • Abstract
    NbTiN is one of the most promising materials for use in the tuning circuits of Nb-based SIS mixers for operating frequencies above the gap frequency of Nb (/spl ap/700 GHz). We examine the properties of NbTiN films obtained using an unbalanced sputtering source in both RF and DC operating regimes. It is found that the properties of NbTiN films are strongly affected by the total pressure of the sputtering process. Films obtained under lower pressures have higher compressive stresses and lower resistivities. The best NbTiN films are obtained by DC sputtering and have a transition temperature of 14.4 K, a resistivity of 90 /spl mu//spl Omega//spl middot/cm at 20 K, and a compressive stress of -1 GPa. Films with a resistivity of 110 /spl mu//spl Omega//spl middot/cm at 20 K and a compressive stress of -0.5 GPa have been successfully used as a stripline material for Nb/Al-AlO/sub x//Nb SIS junctions on fused quartz substrates.
  • Keywords
    circuit tuning; compressibility; electrical resistivity; internal stresses; niobium compounds; sputter deposition; strip line components; superconducting thin films; superconductor-insulator-superconductor mixers; titanium compounds; type II superconductors; 110 muohmcm; 14.4 K; 20 K; 700 GHz; 90 muohmcm; DC-sputtered films; Nb-AlO-Nb; Nb-based SIS junctions; Nb-based SIS mixers; Nb/Al-AlO/sub x//Nb SIS junctions; NbTiN; RF-sputtered films; SiO/sub 2/; compressive stres; fused quartz substrates; resistivity; stripline material; total sputtering pressure dependence; transition temperature; tuning circuits; unbalanced sputtering source; Compressive stress; Conductivity; Frequency; Magnetic flux; Niobium; Sputtering; Substrates; Superconducting films; Superconducting magnets; Superconducting materials;
  • fLanguage
    English
  • Journal_Title
    Applied Superconductivity, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8223
  • Type

    jour

  • DOI
    10.1109/77.784784
  • Filename
    784784