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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Uniform magnetic excitations in nanoparticles
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Uniform magnetic excitations in nanoparticles

机译:纳米粒子中的均匀磁激发

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摘要

We have used a spin-wave model to calculate the temperature dependence of the (sublattice) magnetization of magnetic nanoparticles. The uniform precession mode, corresponding to a spin wave with wave vector q =0, is predominant in nanoparticles and gives rise to an approximately linear temperature dependence of the (sublattice) magnetization well below the superparamagnetic blocking temperature for both ferro-, ferri-, and antiferromagnetic particles. This is in accordance with the results of a classical model for collective magnetic excitations in nanoparticles. In nanoparticles of antiferromagnetic materials, quantum effects give rise to a small deviation from the linear temperature dependence of the (sublattice) magnetization at very low temperatures. The complex nature of the excited precession states of nanoparticles of antiferromagnetic materials, with deviations from antiparallel orientation of the sublattice magnetization vectors, results in a contribution to the susceptibility, which increases with increasing temperature.
机译:我们已经使用自旋波模型来计算磁性纳米粒子(亚晶格)磁化的温度依赖性。均匀进动模式对应于波矢量q = 0的自旋波,在纳米颗粒中占主导地位,并导致铁(亚铁,铁,和反铁磁粒子。这与纳米粒子中集体磁激发的经典模型的结果一致。在反铁磁材料的纳米粒子中,量子效应导致在非常低的温度下与(亚晶格)磁化强度的线性温度依赖性小偏差。反铁磁材料的纳米粒子的激发进动态的复杂性质,与亚晶格磁化矢量的反平行取向不同,导致磁化率的提高,磁化率随温度升高而增加。

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