Search Results - "Bezencenet, O."

  • Showing 1 - 11 results of 11
Refine Results
  1. 1

    A perpendicular graphene/ferromagnet electrode for spintronics by Naganuma, H., Zatko, V., Galbiati, M., Godel, F., Sander, A., Carrétéro, C., Bezencenet, O., Reyren, N., Martin, M.-B., Dlubak, B., Seneor, P.

    Published in Applied physics letters (27-04-2020)
    “…We report on the large-scale integration of graphene layers over a FePd perpendicular magnetic anisotropy (PMA) platform, targeting further downscaling of spin…”
    Get full text
    Journal Article
  2. 2

    Stabilizing ultra-thin black phosphorus with in-situ-grown 1 nm-Al2O3 barrier by Galceran, R., Gaufres, E., Loiseau, A., Piquemal-Banci, M., Godel, F., Vecchiola, A., Bezencenet, O., Martin, M.-B., Servet, B., Petroff, F., Dlubak, B., Seneor, P.

    Published in Applied physics letters (11-12-2017)
    “…Exfoliated black phosphorus is a 2D semiconductor with promising properties for electronics, spintronics, and optoelectronics. Nevertheless, its rapid…”
    Get full text
    Journal Article
  3. 3

    Atomic layer deposition of a MgO barrier for a passivated black phosphorus spintronics platform by Kern, L.-M., Galceran, R., Zatko, V., Galbiati, M., Godel, F., Perconte, D., Bouamrane, F., Gaufrès, E., Loiseau, A., Brus, P., Bezencenet, O., Martin, M.-B., Servet, B., Petroff, F., Dlubak, B., Seneor, P.

    Published in Applied physics letters (04-02-2019)
    “…We demonstrate a stabilized black phosphorus (BP) 2D platform thanks to an ultrathin MgO barrier, as required for spintronic device integration. The in-situ…”
    Get full text
    Journal Article
  4. 4

    Nanometer-scale pattern registration and alignment by directed diblock copolymer self-assembly by Black, C.T., Bezencenet, O.

    Published in IEEE transactions on nanotechnology (01-09-2004)
    “…We describe a fabrication method that combines the alignment capabilities of optical lithography with the sub-lithographic dimensions achievable using…”
    Get full text
    Journal Article
  5. 5

    Beyond the magnetic domain matching in magnetic exchange coupling by Magnan, H, Bezencenet, O, Stanescu, D, Belkhou, R, Barbier, A

    Published in Physical review letters (27-08-2010)
    “…We report a new macroscopic first-field-induced magnetic anisotropy for Co/α-Fe2O3(0001) layers, a prototypical ferromagnetic-antiferromagnetic interface for…”
    Get full text
    Journal Article
  6. 6

    Dislocation network driven structural relaxation in hematite thin films by Barbier, A., Bezencenet, O., Mocuta, C., Moussy, J.-B., Magnan, H., Jedrecy, N., Guittet, M.-J., Gautier-Soyer, M.

    “…Using surface X-ray diffraction, we investigated 20 nm thick α -Fe 2O 3(0 0 0 1) thin films deposited on α -Al 2O 3(0 0 0 1) and Pt(1 1 1) single crystals. The…”
    Get full text
    Journal Article
  7. 7

    Interfacial reactivity of magnetic exchange coupled Co/α-Fe2O3(0001) interfaces by BEZENCENET, O, BARBIER, A, OHRESSER, P, BELKHOU, R, STANESCU, S, OWENS, J, GUITTET, M.-J

    Published in Surface science (15-09-2007)
    “…The present study focuses on the growth mode and interface reactivity of the prototypical Co/alpha-Fe2O3(0001) ferromagnet/antiferromagnet interface. The…”
    Get full text
    Conference Proceeding Journal Article
  8. 8

    Interfacial reactivity of magnetic exchange coupled Co/α-Fe 2O 3(0 0 0 1) interfaces by Bezencenet, O., Barbier, A., Ohresser, P., Belkhou, R., Stanescu, S., Owens, J., Guittet, M.-J.

    Published in Surface science (2007)
    “…The present study focuses on the growth mode and interface reactivity of the prototypical Co/α-Fe 2O 3(0 0 0 1) ferromagnet/antiferromagnet interface. The…”
    Get full text
    Journal Article
  9. 9
  10. 10

    30 GHz optoelectronic mixing in CVD graphene by Montanaro, A, Mzali, S, Mazellier, J. -P, Bezencenet, O, Larat, C, Molin, S, Legagneux, P, Dolfi, D, Dlubak, B, Seneor, P, Martin, M. -B, Hofmann, S, Robertson, J, Centano, A, Zurutuza, A

    Published 09-11-2015
    “…We report an optoelectronic mixer based on chemical vapour-deposited graphene. Our device consists in a coplanar waveguide that integrates a graphene channel,…”
    Get full text
    Journal Article
  11. 11