• DocumentCode
    1237992
  • Title

    Feasibility studies of ultra-small Josephson junctions for qubits

  • Author

    Tzalenchuk, Alexander Ya. ; Lindström, Tobias ; Charlebois, Serge A. ; Stepantsov, Evgueni A. ; Zagoskin, Alexandre M. ; Ivanov, Zdravko ; Claeson, Tord

  • Volume
    13
  • Issue
    2
  • fYear
    2003
  • fDate
    6/1/2003 12:00:00 AM
  • Firstpage
    948
  • Lastpage
    951
  • Abstract
    Most proposed realizations of a high temperature superconductor (HTS) qubit require the use of very small Josephson junctions. The properties of bicrystal junctions are especially interesting since they make it possible to implement several types of flux qubits in a relatively simple way. We have developed a technique that allows us to produce high quality sub-micrometer junctions in a reproducible way using bicrystal technology. We have successfully fabricated and characterized a large number of YBCO junctions and SQUIDs with bridge width as small as 0.2 micrometer on 0°-3°, 0°-40° and 0°-45° bicrystal STO substrates. The properties of these junctions have been extensively examined at temperatures down to 20 mK. The effects of external magnetic fields on these structures have been investigated. Figures of merit for the proposed qubits were also extracted from these measurements.
  • Keywords
    Josephson effect; SQUIDs; barium compounds; high-temperature superconductors; quantum computing; yttrium compounds; 0.2 micron; 20 mK; SQUIDs; YBCO; YBaCuO; bicrystal technology; external magnetic fields; flux qubits; high temperature superconductor; sub-micrometer junctions; ultra-small Josephson junctions; Bridges; Grain boundaries; High temperature superconductors; Josephson junctions; Magnetic field measurement; Physics; Quantum computing; SQUIDs; Superconductivity; Yttrium barium copper oxide;
  • fLanguage
    English
  • Journal_Title
    Applied Superconductivity, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8223
  • Type

    jour

  • DOI
    10.1109/TASC.2003.814158
  • Filename
    1211762