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The magnetization processes,spin reorientation transitions and magnetic domain structure in DyFe10CoTi single crystal
Institution:1. Physics Department of Moscow State University, 119899 Moscow, Russia;2. Physics Department of Tver State University, 170000 Tver, Russia;3. International Laboratory of High Magnetic Fields and Low Temperatures, Wroclaw, Poland;4. Polish Academy of Sciences, Trebiatowski Institute of Low Temperatures and Structure Research, P.O. Box 1410, 50-950 Wroclaw 2, Poland;1. International Research Centre in Critical Raw Materials-ICCRAM, Universidad de Burgos, Plaza Misael Bañuelos S/n, 09001, Burgos, Spain;2. Israel Institute of Metals, Technion R&D Foundation Ltd., Technion City, 3200003, Haifa, Israel;3. Institute of Materials Science, Technical University of Darmstadt, Alarich-Weiss-Str. 16, D-64287, Darmstadt, Germany;1. Leibniz Institute for Solid State and Materials Research (IFW) Dresden, Helmholtzstrasse 20, D-01069 Dresden, Germany;2. Institute for Materials Science, TU Dresden, 01062 Dresden, Germany;3. Institute of Natural Sciences, Ural Federal University, 620002 Ekaterinburg, Russia;4. Nippon Steel and Sumitomo Metal Corporation, Futtsu, Japan;1. Materials Science, Technische Universität Darmstadt, Darmstadt 64287, Germany;2. National University of Science and Technology MISIS, Moscow 119049, Russian Federation;3. Tver State University, Tver 170100, Russian Federation;1. Institut für Kernphysik, Technische Universität Darmstadt, 64289 Darmstadt, Germany;2. School of Physics and Astronomy, The University of Manchester, Manchester, M13 9PL, United Kingdom;3. Max-Planck-Institut für Kernphysik, 69117 Heidelberg, Germany;4. Experimental Physics Department, CERN, 1211 Geneva 23, Switzerland;5. KU Leuven, Instituut voor Kern-en Stralingsfysica, 3001 Leuven, Belgium;6. Institut für Theoretische Physik, TU Dresden, 01062 Dresden, Germany;7. Technische Universität München, 80333 München, Germany;8. Department of Physics, St. Petersburg State University, 199034 St. Petersburg, Russia;9. National Research Centre “Kurchatov Institute”, B.P. Konstantinov Petersburg Nuclear Physics Institute, Gatchina, Leningrad District 188300, Russia;10. Center for Advanced Studies, Peter the Great St. Petersburg Polytechnic University, 195251 St. Petersburg, Russia;11. Helmholtz-Institut Jena, 07743 Jena, Germany;1. UNESCO-UNISA Africa Chair in Nanosciences-Nanotechnology, College of Graduate Studies, University of South Africa, Muckleneuk Ridge, PO Box 392, Pretoria, South Africa;2. Nanoscience’s African Network (NANOAFNET), iThemba LABS-National Research Foundation, 1 Old Faure Road, Somerset West 7129, PO Box 722, Somerset West, Western Cape Province, South Africa;3. School of Preliminary Studies (SPS) Science, Physics Unit, Ibrahim Badamasi Babangida University, Lapai, P.M.B 11 Niger State, Nigeria;4. Department of Physics, Busitema University, P.O. Box 236, Torro, Uganda;5. Department of Physics, Islamic University in Uganda, P.O. Box 2555, Mbale, Uganda;6. Department of Physics, Faculty of Natural Science, University of the Western Cape, Private Bag X 17, Belleville, South Africa;7. Future Leader-African Independent Researcher, College of Natural and Computational Science, Physics, Adigra University, P.O. Box 50, Adigrat, Ethiopia;1. Elements Strategy Initiative Center for Magnetic Materials, National Institute for Materials Science, Tsukuba 305-0047, Japan;2. Graduate School of Pure and Applied Sciences, University of Tsukuba, Tsukuba 305-8577, Japan;3. Daido Corporate Research & Development Center, Daido Steel Co., Ltd., Nagoya 457-8545, Japan
Abstract:The tetragonal ThMn12-type, single crystalline DyFe10CoTi sample has been investigated by torque and magnetization measurements and observation of domain structure at various temperatures between 10–300 K and in magnetic field from B=0 to 0.15 T. These examinations showed that the magnetic structure of DyFe10CoTi changes from “easy axis” (c-axis) type to conical at 225 K and to “easy plane” (ab plane) type at 100 K.
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