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Reimer for skillful technical assistance. L.B acknowledges the European\nUnion's Horizon 2020 research and innovation program under the Marie Sk\u0142odowska-Curie\ngrant agreements ARTES number 793159. L.B. and M.K. acknowledge support from the\nGraduate School of Excellence Materials Science in Mainz (MAINZ) DFG 266, the DAAD\n(Spintronics network, Project No. 57334897) and all groups from Mainz acknowledge that this\nwork was funded by the Deutsche Forschungsgemeinschaft (DFG, German Research\nFoundation) - TRR 173 \u2013 268565370 (projects A01, A03, A11, B02, and B12). M.K. acknowledge\nfinancial support from the Horizon 2020 Framework Programme of the European Commission\nunder FET-Open grant agreement no. 863155 (s- Nebula). This work was also supported by\nERATO \"Spin Quantum Rectification Project\" (Grant No. JPMJER1402) and the Grant-in-Aid\nfor Scientific Research on Innovative Area, \"Nano Spin Conversion Science\" (Grant No.\nJP26103005), Grant-in-Aid for Scientific Research (C) (Grant No. JP20K05297) from JSPS\nKAKENHI, Japan.\nCOMSOL\uf0e2 and COMSOL Multiphysics\uf0e2 are registered trademarks of COMSOL AB", "type": { "id": "notes", "title": { "de": "Anmerkungen", "en": "Notes" } } } ], "creators": [ { "affiliations": [ { "name": "Johannes Gutenberg-University Mainz" } ], "person_or_org": { "family_name": "Hendrik Meer", "name": "Hendrik Meer", "type": "personal" } }, { "affiliations": [ { "name": "Johannes Gutenberg-University Mainz" } ], "person_or_org": { "family_name": "Felix Schreiber", "name": "Felix Schreiber", "type": "personal" } }, { "affiliations": [ { "name": "Johannes Gutenberg-University Mainz" } ], "person_or_org": { "family_name": "Christin Schmitt", "name": "Christin Schmitt", "type": "personal" } }, { "affiliations": [ { "name": "Tohoku University" } ], "person_or_org": { "family_name": "Rafael Ramos", "name": "Rafael Ramos", "type": "personal" } }, { "affiliations": [ { "name": "Tohoku University" } ], "person_or_org": { "family_name": "Eiji Saitoh", "name": "Eiji Saitoh", "type": "personal" } }, { "affiliations": [ { "name": "Johannes Gutenberg-University Mainz" } ], "person_or_org": { "family_name": "Olena Gomonay", "name": "Olena Gomonay", "type": "personal" } }, { "affiliations": [ { "name": "Johannes Gutenberg-University Mainz" } ], "person_or_org": { "family_name": "Jairo Sinova", "name": "Jairo Sinova", "type": "personal" } }, { "affiliations": [ { "name": "Johannes Gutenberg-University Mainz" } ], "person_or_org": { "family_name": "Lorenzo Baldrati", "name": "Lorenzo Baldrati", "type": "personal" } }, { "affiliations": [ { "name": "Johannes Gutenberg-University Mainz" } ], "person_or_org": { "family_name": "Mathias Kl\u00e4ui", "identifiers": [ { "identifier": "0000-0002-4848-2569", "scheme": "orcid" } ], "name": "Mathias Kl\u00e4ui", "type": "personal" } } ], "description": "
Data for the article "Direct imaging of current-induced antiferromagnetic switching revealing a pure thermomagnetoelastic switching mechanism" (Direct Imaging of Current-Induced Antiferromagnetic Switching Revealing a Pure Thermomagnetoelastic Switching Mechanism in NiO | Nano Letters (acs.org) and [2008.05219] Direct imaging of current-induced antiferromagnetic switching revealing a pure thermomagnetoelastic switching mechanism (arxiv.org))
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