MNEMOSYN stands for « 2D MagNEtic meMOries: Scalable growth and hYbrid electrical operatioN ». It is 36-months-long FLAG-ERA Graphene Basic Research project. MNEMOSYN will develop and optimize techniques to grow large-scale 2D magnets, co-integrated with strong spin-orbit coupling materials, graphene and 2D ferroelectrics in multilayered van der Waals heterostructures. The main objective is to demonstrate […]
Read moreOn Monday, July 04th at 9:30, Sambit GHOSH will defend his PhD thesis entitled: Manipulation of Domain Walls in Rare-earth Free Anti-perovskite Ferrimagnetic Nitrides Manipulation de parois de domaines magnétiques dans des nitrures ferrimagnétiques de structure antipérovskite Place : SPINTEC, CEA Bat. 10.05 Room 445 Zoom link (**) : https://univ-grenoble-alpes-fr.zoom.us/j/3241920232 Code d’accès/Access code : 115623 Abstract: The […]
Read moreSPINTEC is opening a two years post-doctoral position on modelling of all optical switching using light carrying orbital momentum The manipulation of magnetization by ps or fs light pulses has become a very exciting topic nowadays opening routes towards ultrafast magnetization control. To date, most of the light-spin interaction studies made use of spin angular […]
Read moreQ. H. Wang✉, A. Bedoya-Pinto, M. Blei, A. H. Dismukes, A. Hamo, S. Jenkins, M. Koperski, Y. Liu, Q.-Ch. Sun, E. J. Telford, H. H. Kim, M. Augustin, U. Vool, J.-X. Yin, L. H. Li, A. Falin, C. R. Dean, F. Casanova, R. F. L. Evans, M. Chshiev, A. Mishchenko, C. Petrovic, R. He, L. […]
Read moreF. Trier, P. Noël, J.-V. Kim, J.-Ph. Attané, L. Vila & M. Bibes✉, Nature Reviews Materials 7, 258 (2022). In this Review, the recent advances in the new field of oxide spin-orbitronics including the control of spin–orbit-driven effects by ferroelectricity are surveyed, and the future perspectives for the field are discussed. Oxide materials possess […]
Read moreVan der Waals (vdW) layered magnets are promising materials to develop ultracompact and multifunctional spintronics devices. However, most of them are magnetic only at low temperature and are almost exclusively studied in the form of small flakes obtained by mechanical exfoliation. Here, we demonstrate the direct growth by molecular beam epitaxy of Fe5GeTe2, a room […]
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