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Particle size and cooling field dependence of exchange bias in core/shell magnetic nanoparticles

机译:芯/壳磁性纳米粒子中交换偏压的粒度和冷却场依赖性

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We present a numerical simulation study of the exchange bias (EB) effect in nanoparticles with core/shell structure aimed at unveiling the microscopic origin of some of the experimental phenomenology associated with this effect. In particular, we have focused our study on the particle size and field cooling dependence of the hysteresis loop shifts. To this end, hysteresis loops after a field cooling process have been computed by means of Monte Carlo simulations based on a model that takes into account the peculiar properties of the core, shell and interfacial regions of the particle and the EB and coercive fields have been extracted from them. The results show that, as a general trend, the EB field h_(eb) decreases with increasing particle size, in agreement with some experimental observations. However, closer inspection reveals notable oscillations of h_(eb) as a function of the particle radius which we show to be closely related to the net magnetization established after field cooling at the interfacial shell spins. For a particle with ferromagnetic interface coupling, we show that the magnitude and sign of h_(eb) can be varied with the magnetic field applied during the cooling process.
机译:我们在纳米颗粒中展示了核心/壳结构的交换偏差(EB)效应的数值模拟研究,旨在揭示与这种效果相关的一些实验现象学的微观起源。特别是,我们专注于我们的研究滞后环移位的粒度和场冷却依赖性。为此,通过基于考虑核心,粒子和渗透域的核心,壳和界面区域的特殊特性,通过蒙特卡罗模拟计算了现场冷却过程之后的磁滞回路。从它们中提取。结果表明,作为一般趋势,EB字段H_(EB)随着粒径的增加而降低,同时与一些实验观察结果。然而,仔细检查揭示了H_(EB)的显着振荡作为我们所示与在界面壳旋转处的场冷之后建立的净磁化密切相关的颗粒半径的函数。对于具有铁磁接口耦合的粒子,我们表明H_(EB)的幅度和标志可以随着冷却过程中施加的磁场而变化。

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