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Determination of Blocking Temperature in Magnetization and Mossbauer Time Scale: A Functional Form Approach

机译:磁化中阻塞温度的测定与莫斯巴尔时间尺度:一种功能形式方法

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摘要

We studied the temperature,dependence of the magnetization in an ensemble of monodomain nanoparticles both with dc magnetometry and Mossbauer spectroscopy. The analytical form of the temperature dependence is given by the complementary cumulative distribution function. This allows to determine the magnetization blocking temperatures of the sample by a fitting procedure. It is possible to calculate the Mossbauer blocking temperature by a single spectrum and the dc magnetization blocking temperature by, two points of the thermoremanent magnetization curve, thus with a large reduction of the experimental work. The method may be used for particles with not too strong interactions, such happens in the Fe28 sample and not for samples with strong interactions as N30; it may be used for interparticle interaction energies up to 2 yJ and not for energies larger than 60 yJ. This method of analysis of the data should be used in the future work concerning the thermoremanent magnetization and Mossbauer spectra of magnetic nanoparticles.
机译:我们研究了Monodomain纳米粒子的集合中的温度,磁化依赖性,所述直流磁体纳米粒子和母动体光谱。温度依赖性的分析形式由互补累积分布函数给出。这允许通过配合程序确定样品的磁化阻断温度。可以通过单谱和DC磁化阻挡温度来计算莫斯堡阻断温度,通过热度磁化曲线的两个点,实验工作的大大减少。该方法可用于颗粒,其相互作用不太强,如FE28样品中的发生,而不是具有强相互作用的样品作为N30;它可用于最多2 yj的末端相互作用能量,而不是大于60 yj的能量。这种分析数据方法应在未来的工作中使用关于磁性纳米粒子的热向磁化和磁腹光谱的工作。

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