E
Etienne Snoeck
Researcher at Centre national de la recherche scientifique
Publications - 246
Citations - 10906
Etienne Snoeck is an academic researcher from Centre national de la recherche scientifique. The author has contributed to research in topics: Magnetization & Electron holography. The author has an hindex of 47, co-authored 242 publications receiving 10005 citations. Previous affiliations of Etienne Snoeck include Paul Sabatier University & Intelligence and National Security Alliance.
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Spontaneous Formation of Ordered 2D and 3D Superlattices of ZnO Nanocrystals
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Size-Specific Spin Configurations in Single Iron Nanomagnet: From Flower to Exotic Vortices.
Christophe Gatel,Francisco Javier Bonilla,Anca Meffre,Etienne Snoeck,Bénédicte Warot-Fonrose,Bruno Chaudret,Lise-Marie Lacroix,Thomas Blon +7 more
TL;DR: By combining chemical synthesis, electron holography in a dedicated transmission electron microscope and micromagnetic simulations, the "magnetic configurations vs size" phase diagram of Fe single-crystalline nanocubes is established and an intermediate spin configuration consisting of an ⟨111⟩ vortex is for the first time evidenced.
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MICROSTRUCTURAL STUDIES OF IN SITU PRODUCED FILAMENTARY Cu/Nb WIRES
Etienne Snoeck,Florence Lecouturier,Ludovic Thilly,Marie-José Casanove,H Rakoto,G. Coffe,S. Askenazy,J.P. Peyrade,Christian Roucau,V Pantsyrny,A Shikov,A Nikulin +11 more
TL;DR: In this paper, the authors present the results of a study at the Nikulin Centre d'Elaboration de Materiaux et d'Etudes Structurales CEMES-CNRS.
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Synthesis, Characterization, and Magnetic Studies of Nonagglomerated Zerovalent Iron Particles. Unexpected Size Dependence of the Structure
Dominique de Caro,Teyeb Ould Ely,Alain Mari,Bruno Chaudret,Etienne Snoeck,Marc Respaud,Jean-Marc Broto,Andre R. Fert +7 more
TL;DR: In this article, HREM analysis of the particles demonstrate that the smaller particles (≤25 A) adopt the α-Fe (bcc) structure, whereas the larger ones adopt the γ-Fe structure.
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Dark-field electron holography for the measurement of geometric phase.
TL;DR: The genesis, theoretical basis and practical application of the new electron holographic dark-field technique for mapping strain in nanostructures are presented and the development places geometric phase within a unified theoretical framework for phase measurements by electron holography.