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Davide MACCARIELLO

Courbevoie

En résumé

International profile with more than 8 years of professional experience, tackling multidisciplinary topics of Material Science and Nanotechnology. Main experience within experimental Physics, in particular in Surface and Interface Science focused on the growth and characterization of the thin films. Result oriented, combining technical and analytical skills. Teamwork-oriented person with a high capacity for work, mediation skills, project leading. His scientific activities demonstrates problem solving skills and the capability to confirm his leadership and independent thinking by defining and developing his own line of research.

Since Febrary 2015, D. Maccariello is working on the stabilization and detection of magnetic skyrmions in metallic thin films at CNRS-Thales, in the group of Prof. Albert Fert, Nobel Prize in Physics in 2007. D. Maccariello received his PhD in Condensed Matter Physics and Nanotechnology at Universidad Autonoma de Madrid. He worked in the group of the Surface Science Laboratory on the dynamical properties as surface phonons and charge transfer phenomena in nanostructured graphene-based surfaces. In the framework of his PhD thesis, he collaborated with the group of growth and characterization of magnetic nanomaterials at IMDEA-Nanoscience Institute where he focused on the study of magnetization reversal processes and magnetoresistive phenomena in low dimensional magnetic systems with large Spin-Orbit coupling. During his Master's thesis, he worked on the origin of quasi-2D electron gas at the interface of multifunctional oxides at CNR-SPIN Lab in Naples.

Mes compétences :
technical and analytical skills
Sample Growth
Magnetoresistance, Magnetism
Metals, Oxides, Graphene
OriginLab, LabTalk, Matlab,Microsoft Office, Adobe
Sample Characterization
Magnetrons
Materials, Ultra thin films,
Pulsed Laser Deposition, Sputtering, Molecular Bea
Python
Machine Learning
Couches minces
Analyses physico chimiques
Analyse de données
Physique
Analyse
Spectroscopie

Entreprises

  • Saint-gobain - Research Engineer

    Courbevoie 2019 - maintenant
  • UMR CNRS-THALES - Sample characterization, Project leading

    2015 - maintenant Study of nucleation, propagation and detection of novel magnetic textures in ferromagnetic ultra-thin films metallic multilayers. (Directly involved in National and European projects: ANR project ``ULTRASKY''; FET OPEN European project
    ``MAGICSKY)''
  • IMDEA-Nanoscience - Growth and characterization of metallic ultra thin films

    2013 - 2015 Growth of composite material systems (thin films, superlattices) and magneto-transport characterization of low dimensional
    metallic structures. (Involved in Spanish national project ``MORGASPIN)''.
  • Surface Science Lab UAM - Growth and study of structural and dynamics properties of graphene

    2010 - 2013 (3 years) Surface Science Lab, Universidad Autonoma de Madrid (UAM),
    Structural and Dynamical Properties of graphene growth on metal surfaces and its chemical interfacial interactions with
    adsorbate molecules studied by X-ray and Ultra-Violet photoemission spectroscopy. (Founded by: MEC ``CONSOLIDER-
    INGENIO)''.

Formations

  • Stanford University (Stanford)

    Stanford 2018 - maintenant Coursera certification (https://www.coursera.org/account/accomplishments/certificate/26VU7XDBCLEX)
  • Universidad Autónoma De Madrid (Madrid)

    Madrid 2010 - 2014 PhD Solid State Physics and Nanotechnology

    Structural and dynamical properties of graphene on metal surfaces and its interaction with adsorbate molecules

    GENERAL SKILLS:
    Process development
    Project leading
    Bibliographic research
    Data analysis
    Redaction of scientific articles
    Maintenance and improvement of the UHV system
    Knowledge transfer

    COMPUTER SKILLS: Labview, CasaXPS, OriginLab, COMSOL multiphysics


     TECHNICAL SKILLS
    Sample pr
  • Università degli Studi di Napoli FEDERICO II (Napoli)

    Napoli 2008 - 2010 Master

    Characterization of the interfaces in composite oxide systems. Growth of functional oxide thin films by pulsed laser
    deposition assisted by Reflection High Energy Electron Diffraction (RHEED). 2D electron gas at interface between insulating oxide thin films

    GENERAL SKILLS:
    Process development
    Bibliographic research
    Data management and analysis
    Maintenance and improvement of the samples growth
  • University Of Naples (Napoli)

    Napoli 1999 - 2009 Master

    Italian: Mother tongue English: Advanced Master in Physics. University of Naples "Federico II",

Réseau

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