Thermal evolution of exchange interactions in lightly doped barium hexaferrites
Autor: | E.L. Trukhanova, Anatoly M. Balagurov, V.O. Natarov, Larissa V. Panina, An.V. Trukhanov, Sergei V. Trukhanov, V.G. Kostishyn, I. S. Kazakevich, Vitalii Turchenko, Alex Trukhanov |
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Rok vydání: | 2017 |
Předmět: |
010302 applied physics
Materials science Magnetic structure Condensed matter physics Magnetic moment Neutron diffraction 02 engineering and technology engineering.material Atmospheric temperature range 021001 nanoscience & nanotechnology Condensed Matter Physics 01 natural sciences Electronic Optical and Magnetic Materials Condensed Matter::Materials Science Magnetization Condensed Matter::Superconductivity 0103 physical sciences engineering Diamagnetism Curie temperature 0210 nano-technology Invar |
Zdroj: | Journal of Magnetism and Magnetic Materials. 426:554-562 |
ISSN: | 0304-8853 |
DOI: | 10.1016/j.jmmm.2016.10.151 |
Popis: | The lightly doped BaFe12−xDxO19 (D=Al3+, In3+; x=0.1 and 0.3) polycrystalline hexaferrite samples have been investigated by powder neutron diffractometry as well as by vibration sample magnetometry in a wide temperature range from 4 K up to 740 K and in magnetic field up to 14 T to establish the nature of Fe3+(Al3+, In3+) – O2- - Fe3+(Al3+, In3+) indirect exchange interactions. The crystal structure features such as the ionic coordinates and lattice parameters have been defined and Rietveld refined. The Invar effect has been observed in low temperature range below 150 K. It was explained by the thermal oscillation anharmonicity of ions. It is established that the ferrimagnet-paramagnet phase transition is a standard second-order one. From the macroscopic magnetization measurement the Curie temperature and ordered magnetic moment per nominal iron ion are obtained. From the microscopic diffraction measurement the magnetic moments at all the nonequivalent ionic positions and total magnetic moment per iron ion have been obtained at different temperatures down to 4 K. The light diamagnetic doping mechanism and magnetic structure model are proposed. The effect of light diamagnetic doping on nature of Fe3+(Al3+, In3+) – O2- - Fe3+(Al3+, In3+) indirect exchange interactions with temperature increase is discussed. |
Databáze: | OpenAIRE |
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