• DocumentCode
    1565126
  • Title

    Characterization and modeling of tunnel barrier reliability

  • Author

    Nakajima, K. ; Amano, M. ; Sagoi, M. ; Saito, Y.

  • Author_Institution
    Memory LSI R. & D. Center, Toshiba Corp., Yokohama, Japan
  • fYear
    2002
  • Abstract
    Summary form only given. The reliability of ultra-thin dielectric film composing the ferromagnetic tunnel junctions (MTJs) is of great importance for MRAM development. Considerable work has been done in the area of gate oxide, however there are relatively few works in ultra-thin aluminum oxide serving as a tunnel barrier. In this work, the dielectric breakdown of MTJs is investigated, by means of current sweep experiments and time-to-breakdown measurements on a series of patterned MTJs with both different junction area and stress conditions. We will present the analytical results and discussions of the breakdown mechanism of MTJs. The MTJs used in this work were dual spin valve-type double tunnel junctions prepared by the ultra-high vacuum sputtering technique, having the structure SiO/sub 2//Ta/NiFe/IrMn/Co/sub 50/Fe/sub 50/(2 nm)/AlO/sub x//CoFeNi(3 nm)/AlO/sub x//Co/sub 50/Fe/sub 50/(2 nm)/IrMn. The tunnel barriers were fabricated by deposition of 0.8 nm Al following in-situ plasma oxidization. The samples were patterned using photolithography and ion milling.
  • Keywords
    aluminium compounds; cobalt alloys; dielectric materials; electric breakdown; ferromagnetic materials; iron alloys; magnetoresistive devices; nickel alloys; reliability; spin valves; sputtered coatings; 0.8 nm; MRAM; SiO/sub 2/-Ta-NiFe-IrMn-Co/sub 50/Fe/sub 50/-AlO/sub x/-CoFeNi-AlO/sub x/-Co/sub 50/Fe/sub 50/IrMn; current sweep experiments; dielectric breakdown; dual spin valve-type double tunnel junctions; ferromagnetic tunnel junctions; in-situ plasma oxidization; ion milling; junction area; patterned MTJs; photolithography; stress condition effects; time-to-breakdown measurements; tunnel barrier reliability; ultra-high vacuum sputtering; ultra-thin aluminum oxide; ultra-thin dielectric film; Aluminum oxide; Area measurement; Current measurement; Dielectric breakdown; Dielectric films; Dielectric measurements; Electric breakdown; Iron; Magnetic tunneling; Stress measurement;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Magnetics Conference, 2002. INTERMAG Europe 2002. Digest of Technical Papers. 2002 IEEE International
  • Conference_Location
    Amsterdam, The Netherlands
  • Print_ISBN
    0-7803-7365-0
  • Type

    conf

  • DOI
    10.1109/INTMAG.2002.1000782
  • Filename
    1000782