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Magnetic and magneto-optical properties of ion-synthesized cobalt nanoparticles in silicon oxide
Authors:I S Edelman  O V Vorotynova  V A Seredkin  V N Zabluda  R D Ivantsov  Yu I Gatiyatova  V F Valeev  R I Khaĭbullin  A L Stepanov
Institution:(1) Kirensky Institute of Physics, Siberian Branch, Russian Academy of Sciences, Akademgorodok, Krasnoyarsk, 660036, Russia;(2) Institute of Urban Construction, Management, and Regional Economics, Siberian Federal University, Svobodnyi pr. 79, Krasnoyarsk, 660041, Russia;(3) Zavoisky Physical-Technical Institute, Russian Academy of Sciences, Sibirskiĭ trakt 10/7, Kazan, 420029, Russia;(4) Laser Zentrum Hannover, Hollerithallee 8, Hannover, D-30419, Germany
Abstract:The magnetic and magneto-optical properties of ion-synthesized cobalt nanoparticles in the amorphous silicon oxide matrix are investigated as a function of the implantation dose. The analysis of the field dependences of the magnetization and the magneto-optical Faraday and Kerr effects demonstrates that, as the ion implantation dose increases, the superparamagnetic behavior of an ensemble of cobalt nanoparticles at room temperature gives way to a ferromagnetic response with the anisotropy characteristic of a thin magnetic film. The magnetization curves for the superparamagnetic and ferromagnetic ensembles of cobalt nanoparticles are simulated to determine their average sizes and the filling density in the irradiated layer of the silicon dioxide matrix. It is revealed that the spectral dependences of the Faraday and Kerr effects for ion-synthesized cobalt nanoparticles differ substantially from those for continuous cobalt films due to the localized excitations of free electrons in the nanoparticles.
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