Studies about the influence of self-organization of colloidal magnetic nanoparticles on the magnetic Néel relaxation time
- Authors: Cacciola M.1, Osaci M.2
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Affiliations:
- University “Mediterranea” of Reggio Calabria
- Department of Electrical Engineering and Industrial Informatics
- Issue: Vol 78, No 4 (2016)
- Pages: 448-458
- Section: Article
- URL: https://journal-vniispk.ru/1061-933X/article/view/200546
- DOI: https://doi.org/10.1134/S1061933X16040037
- ID: 200546
Cite item
Abstract
The monodomain magnetic nanoparticle-based colloids are mainly used in biomedical applications. In this type of colloids, there is a tendency of agglomeration even in the absence of external magnetic field. So, the Néel magnetic relaxation time of the system is affected by that tendency. In this paper, we propose a model to study how the nanoparticle tendency to agglomerate in the nanofluid affects the Néel relaxation time of the system. For simulating the self-organization of colloidal nanoparticles, we apply a Monte Carlo method, and the Néel magnetic relaxation time is assessed through the adaptation and solution of Coffey equations in oblique magnetic field, adapted to the local magnetic field on a nanoparticle.
About the authors
Matteo Cacciola
University “Mediterranea” of Reggio Calabria
Author for correspondence.
Email: matteo.cacciola@unirc.it
Italy, Via Graziella Feo di Vito, Reggio Calabria, I-89100
Mihaela Osaci
Department of Electrical Engineering and Industrial Informatics
Email: matteo.cacciola@unirc.it
Romania, Piata Victoriei Nr. 2, Timisoara, jud. Timis, 300006
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