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Energy dissipation of interacting rigid dipoles driven by the RF-field in a viscous fluid

机译:粘性流体中RF场驱动的刚性倾子的能量耗散

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We have considered the response of an ensemble of uniaxial ferromagnetic nanoparticles placed into a fluid to an alternating field in the presence of thermal bath. The attention was paid to the absorption of the field energy as a result of nanoparticles rotation in a viscous fluid. The influence of the inter-particle interaction effects was studied numerically based on the effective Langevin equation. Using the Barnes-Hut algorithm and CUDA technology, the set of numerical results, which describes the frequency dependence of the power loss, has obtained for various system parameters.
机译:我们已经考虑了单轴铁磁纳米粒子的响应在热浴的存在下置于流体中的流体中。由于纳米颗粒在粘性流体中旋转,因此注意到现场能量的吸收。基于有效的Langevin方程,在数值上进行了数值研究了颗粒间相互作用效应的影响。使用Barnes-Hut算法和CUDA技术,为各种系统参数获得了描述功率损耗频率依赖性的数值结果集。

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