Precessional and thermal relaxation dynamics of magnetic nanoparticles: A time-quantified Monte Carlo approach
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2163845
Reference9 articles.
1. Thermal Fluctuations of a Single-Domain Particle
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4. Thermally Activated Relaxation Time of a Single Domain Ferromagnetic Particle Subjected to a Uniform Field at an Oblique Angle to the Easy Axis: Comparison with Experimental Observations
5. Solving the master equation for extremely long time scale calculations
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1. Field-dependent Brownian relaxation dynamics of a superparamagnetic clustered-particle suspension;Physical Review E;2014-09-22
2. Magnetization reversal time of magnetic nanoparticles at very low damping;Physical Review B;2014-02-10
3. Thermal fluctuations of magnetic nanoparticles: Fifty years after Brown;Journal of Applied Physics;2012-12-15
4. Dynamic phase transition properties and hysteretic behavior of a ferrimagnetic core–shell nanoparticle in the presence of a time dependent magnetic field;Journal of Physics: Condensed Matter;2012-10-04
5. Damping dependence of the reversal time of the magnetization of single-domain ferromagnetic particles for the Néel-Brown model: Langevin dynamics simulations versus analytic results;Physical Review B;2010-07-13
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