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首页> 外文期刊>Russian physics journal >Dependence of the Magnetization Kinetics of Magnetic Dispersed Nanosystems on the Dispersed Phase Concentration and the Change of Its State
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Dependence of the Magnetization Kinetics of Magnetic Dispersed Nanosystems on the Dispersed Phase Concentration and the Change of Its State

机译:磁化纳米系统磁化动力学对分散相浓度的依赖性及其状态的变化

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摘要

The paper presents the results of experimental investigation of the magnetization relaxation processes in an ensemble of magnetic nanoparticles. The experimental results show a nonlinear dependence of the magnetic susceptibility on the volume concentration of the magnetic nanoparticles. Dependences of the magnetization relaxation time on the concentration and temperature of the magnetic nanoparticles are determined from an analysis of the frequency and temperature dependences of the magnetic susceptibility. A complex nonmonotonic dependence of the magnetization relaxation time on the magnetic particle concentration and temperature dependence of the magnetic susceptibility close to exponential one characteristic for a system of interacting dipole particles in the state of the so-called dipole glass have been established. The special features of the magnetization relaxation are caused by the interaction of particles and the change of the structure of the magnetic particle ensemble.
机译:本文介绍了磁性纳米颗粒的集合中磁化松弛过程的实验研究结果。 实验结果表明磁敏感性对磁性纳米颗粒的体积浓度的非线性依赖性。 磁化松弛时间对磁性纳米颗粒的浓度和温度的依赖性由磁化率的频率和温度依赖性的分析确定。 已经建立了磁化弛豫时间对磁粒浓度的复杂非单调依赖性,磁敏感性接近在所谓的偶极玻璃状态下相互作用的偶极颗粒的系统中的一个特征。 磁化松弛的特殊特征是由颗粒的相互作用和磁性粒子合奏的结构的变化引起的。

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