• Title of article

    Synthesis of MnAs ferromagnets by Mn+ ion implantation

  • Author/Authors

    A. Serres، نويسنده , , M. Respaud، نويسنده , , G. Benassayag، نويسنده , , C. Armand، نويسنده , , J.-C. Pesant، نويسنده , , A. Mari، نويسنده , , Z. Liliental-Weber، نويسنده , , A. Claverie، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2003
  • Pages
    5
  • From page
    371
  • To page
    375
  • Abstract
    Ferromagnetic (FM) nanostructures embedded in semiconductors are attracting interest because their physical properties could be used in new devices such as memories, sensors or more generally involving “spintronics”. In this work, we will present experimental results on the influence of the thermal annealing on the structural and magnetic properties of nanosized MnAs ferromagnets buried in GaAs. These nanocrystals have been obtained by Mn+As co-implantation at a dose of View the MathML source for each species, performed at room temperature into GaAs wafers followed by thermal annealing at 750°C. Increasing the duration of the annealing process (tanneal=15,60, and View the MathML source leads to a reduction of the Mn atomic densities. High-resolution transmission electron microscopy and diffraction analysis exhibit unambiguously a population of MnAs precipitates located at the projected range. Their mean diameters are ranged from 8 to View the MathML source as tanneal is longer. The nanocrystals display the expected ferromagnetic behavior with Curie temperatures in the range of View the MathML source. The extracted spontaneous magnetizations from the FM response are found slightly smaller than expected for the bulk phase, probably due to a small fraction of diluted Mn. The influence of the nanoparticle size histogram and concentration on the superparamagnetic behavior is briefly discussed.
  • Keywords
    MnAs ferromagnets , Ion implantation
  • Journal title
    Physica E Low-dimensional Systems and Nanostructures
  • Serial Year
    2003
  • Journal title
    Physica E Low-dimensional Systems and Nanostructures
  • Record number

    1045097