首页> 外文会议>Seeheim Conference on Magnetism(SCM2004); 20040627-0701; Seeheim(DE) >Magnetic relaxation in a model of interacting nanoparticles in terms of microscopic energy barriers
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Magnetic relaxation in a model of interacting nanoparticles in terms of microscopic energy barriers

机译:微观能垒方面的相互作用纳米粒子模型中的磁弛豫

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Monte Carlo simulations are used to study the magnetic relaxation of a system of single domain particles with dipolar interactions modeled by a chain of Heisenberg classical spins. We show that the so-called T ln (t/τ_0) method can be extended to interacting systems and how, from the computed master relaxation curves, the effective energy barrier distributions responsible for the relaxation can be obtained. A transition from a quasi-logarithmic to power-law behavior of the relaxation as the interaction strength is increased is found. By direct computation of the effective energy barriers of the system, we show that this is due to the appearance of an increasing number of small energy barriers caused by the reduction of the ani-sotropy energy barriers as the local dipolar fields increase.
机译:蒙特卡罗模拟用于研究由Heisenberg经典自旋链模拟的具有偶极相互作用的单畴粒子系统的磁弛豫。我们表明,所谓的T ln(t /τ_0)方法可以扩展到相互作用的系统,以及如何从计算出的主弛豫曲线中获得负责弛豫的有效能垒分布。发现随着相互作用强度的增加,从准对数到幂律的松弛过渡。通过直接计算系统的有效能垒,我们表明这是由于随着局部偶极场的增加,各向异性各向异性能垒的减少而引起的小能垒数目的增加。

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