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Magnetorelaxometry in the Presence of a DC Bias Field of Ferromagnetic Nanoparticles Bearing a Viscoelastic Corona

机译:磁粘弹性法在带有粘弹性电晕的铁磁纳米粒子的直流偏置场中

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摘要

With allowance for orientational Brownian motion, the magnetorelaxometry (MRX) signal, i.e., the decay of magnetization generated by an ensemble of ferromagnet nanoparticles, each of which bears a macromolecular corona (a loose layer of polymer gel) is studied. The rheology of corona is modelled by the Jeffreys scheme. The latter, although comprising only three phenomenological parameters, enables one to describe a wide spectrum of viscoelastic media: from linearly viscous liquids to weakly-fluent gels. The “transverse” configuration of MRX is considered where the system is subjected to a DC (constant bias) field, whereas the probing field is applied perpendicularly to the bias one. The analysis shows that the rate of magnetization decay strongly depends on the state of corona and slows down with enhancement of the corona elasticity. In addition, for the case of “transverse” MRX, we consider the integral time, i.e., the characteristic that is applicable to relaxation processes with an arbitrary number of decay modes. Expressions for the dependence of the integral time on the corona elasticity parameter and temperature are derived.
机译:在允许定向布朗运动的情况下,研究了磁弹性测量(MRX)信号,即由铁磁体纳米粒子的集合产生的磁化强度的衰减,每个铁磁体纳米粒子带有大分子电晕(聚合物凝胶的疏松层)。电晕的流变学是由杰弗里斯计划模拟的。后者虽然仅包含三个现象学参数,但却使人们能够描述各种粘弹性介质:从线性粘性液体到弱流动性凝胶。 MRX的“横向”配置被认为是在系统受到DC(恒定偏置)磁场的作用下,而探测磁场垂直于偏置磁场施加的。分析表明,磁化强度的衰减很大程度上取决于电晕的状态,并且随着电晕弹性的增强而减慢。另外,对于“横向” MRX,我们考虑积分时间,即适用于具有任意数量衰减模式的松弛过程的特性。推导了积分时间对电晕弹性参数和温度的依赖关系的表达式。

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