• DocumentCode
    1546104
  • Title

    Directly coupled DC-SQUIDs of YBCO step-edge junctions fabricated by a chemical etching process operating at 77 K

  • Author

    Junho Gohng ; Eun-Hong Lee ; I-Hun Song ; Junghyun Sok ; Sang-Jin Park ; Jo-Won Lee ; Dosquet, C.Y.

  • Author_Institution
    Mater. & Devices Res. Center, Samsung Adv. Inst. of Technol., Suwon, South Korea
  • Volume
    7
  • Issue
    2
  • fYear
    1997
  • fDate
    6/1/1997 12:00:00 AM
  • Firstpage
    3694
  • Lastpage
    3697
  • Abstract
    High T/sub c/ directly coupled DC-SQUIDs have been successfully fabricated on chemically etched MgO substrate steps. The chemical etching was performed in a mixed acid solution of H/sub 3/PO/sub 4/ and H/sub 2/SO/sub 4/ for the best control of etched surface and roughness. YBCO thin films were deposited epitaxially on the step-edged MgO substrate by a KrF laser ablation method. Characteristics of the directly coupled DC-SQUID have been studied following the patterning and fabrication of the device. The chemically etched steps show sharper edges at the bottom of the step as well as the top unlike those made by ion milling. AFM and Raman Spectroscopy studies on the YBCO thin film deposited and patterned on chemically etched show no sign of appreciable degradation. The result is a good quality junction even at a relatively low step angle. Directly coupled DC-SQUIDs that are fabricated with this process show sweeping voltages of 160 /spl mu/V at 4.2 K, and 6 /spl mu/V at 77 K, respectively.
  • Keywords
    Josephson effect; SQUIDs; barium compounds; etching; high-temperature superconductors; yttrium compounds; 77 K; AFM; MgO substrate; Raman spectroscopy; YBCO step-edge junction; YBaCuO; chemical etching; directly coupled DC-SQUID; epitaxial thin film; fabrication; laser ablation; surface roughness; Chemical lasers; Etching; Laser ablation; Milling; Optical device fabrication; Rough surfaces; Sputtering; Substrates; Surface roughness; Yttrium barium copper oxide;
  • fLanguage
    English
  • Journal_Title
    Applied Superconductivity, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8223
  • Type

    jour

  • DOI
    10.1109/77.622220
  • Filename
    622220