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Critical single-domain/multidomain grain sizes in noninteracting and interacting elongated magnetite particles: Implications for magnetosomes

机译:非相互作用和相互作用的细长磁铁矿颗粒中的关键单畴/多畴晶粒尺寸:对磁小体的影响

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摘要

The critical size for stable single-domain (SD) behavior has been calculated as a function of grain elongation for magnetite grains using a numerical micromagnetic algorithm. Importantly, for the first time, we consider the contribution of intergrain magnetostatic interactions on the SD/multidomain (MD) critical size (d0). For individual grains our numerical estimates for d0 for elongated grains are lower than that determined by previous analytical and numerical calculations. Nevertheless, the inclusion of magnetostatic interactions into the model was found to increase d0 to values significantly higher than any previously published estimates of d0 for individual grains. Therefore the model calculations show that there is a relatively wide range of grain sizes within which depending on the degree of magnetostatic interactions and elongation, a grain can be either SD or MD. The model results are compared to observations of magnetosomes found in magnetotactic bacteria. The newly calculated upper d0 limit for the interacting grains now accommodates the largest magnetosomes reported in the literature. These large magnetosomes were previously thought to be MD, suggesting that evolutionary processes are highly efficient at optimizing magnetosome grain size and spatial distribution.
机译:使用数值微磁算法已计算出稳定的单畴(SD)行为的临界尺寸,作为磁铁矿晶粒的晶粒伸长率的函数。重要的是,我们首次考虑了晶粒间静磁相互作用对SD /多域(MD)临界尺寸(d0)的贡献。对于单个晶粒,我们对拉长晶粒的d0的数值估算值低于以前的分析和数值计算得出的数值。然而,发现静磁相互作用被包含在模型中可将d0增加到明显高于以前发布的任何单个晶粒d0估计值的值。因此,模型计算表明,存在较大范围的晶粒尺寸,根据静磁相互作用和伸长的程度,晶粒可以是SD或MD。将模型结果与在趋磁细菌中发现的磁小体的观察结果进行比较。新计算的相互作用颗粒的d0上限现在可以容纳文献中报道的最大磁小体。这些大的磁小体以前被认为是MD,表明进化过程在优化磁小体的晶粒尺寸和空间分布方面非常有效。

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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