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Second-order-like cluster-monomer transition within magnetic fluids and its impact upon the magnetic susceptibility

机译:磁流体中的二阶类簇状单体转变及其对磁化率的影响

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摘要

The low-field (below 5 Oe) ac and dc magnetic response of a magnetic fluid [MF] sample in the range of 305 to 360 K and 410 to 455 K was experimentally and theoretically investigated. We found a systematic deviation of Curie's law, which predicts a linear temperature dependence of inverse initial susceptibility in the range of our investigation. This finding, as we hypothesized, is due to the onset of a second-order-like cluster-to-monomer transition with a critical exponent which is equal to 0.50. The susceptibility data were well fitted by a modified Langevin function, in which cluster dissociation into monomers, at the critical temperature [T*], was included. In the ac experiments, we found that T* was reducing from 381.8 to 380.4 K as the frequency of the applied field increases from 123 to 173 Hz. In addition, our ac experiments confirm that only monomers respond for the magnetic behavior of the MF sample above T*. Furthermore, our Monte Carlo simulation and analytical results support the hypothesis of a thermal-assisted dissociation of chain-like structures.>PACS: 75.75.-C; 75.30.Kz; 75.30.Cr.
机译:实验和理论上研究了磁性流体[MF]样品在305至360 K和410至455 K范围内的低场(低于5 Oe)交流和直流磁响应。我们发现了居里定律的系统偏差,该偏差预测了我们研究范围内初始初始磁化率的线性温度依赖性。正如我们所假设的,该发现是由于出现了具有等于0.50的临界指数的类似二阶的簇到单体的转变。敏感性数据通过改进的兰格文函数很好地拟合,其中包括在临界温度[T *]下簇解离为单体的过程。在交流实验中,我们发现随着施加磁场的频率从123 Hz增加到173 Hz,T *从381.8降低到380.4K。此外,我们的交流实验证实,只有单体会对T *以上的MF样品的磁行为做出反应。此外,我们的蒙特卡洛模拟和分析结果支持链状结构热辅助解离的假设。> PACS: 75.75.-C; 75.30.Kz; 75.30。点

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