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Visualized effect of oxidation on magnetic recording fidelity in pseudo-single-domain magnetite particles

机译:氧化对拟单畴磁铁矿颗粒中磁记录保真度的可视化影响

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摘要

Magnetite (Fe3O4) is an important magnetic mineral to Earth scientists, as it carries the dominant magnetic signature in rocks, and the understanding of its magnetic recording fidelity provides a critical tool in the field of palaeomagnetism. However, reliable interpretation of the recording fidelity of Fe3O4 particles is greatly diminished over time by progressive oxidation to less magnetic iron oxides, such as maghemite (γ-Fe2O3), with consequent alteration of remanent magnetization potentially having important geological significance. Here we use the complementary techniques of environmental transmission electron microscopy and off-axis electron holography to induce and visualize the effects of oxidation on the magnetization of individual nanoscale Fe3O4 particles as they transform towards γ-Fe2O3. Magnetic induction maps demonstrate a change in both strength and direction of remanent magnetization within Fe3O4 particles in the size range dominant in rocks, confirming that oxidation can modify the original stored magnetic information.
机译:磁铁矿(Fe3O4)对地球科学家来说是一种重要的磁性矿物,因为它在岩石中具有主要的磁性特征,并且对其磁记录保真度的理解为古磁性领域提供了重要的工具。但是,随着时间的流逝,逐步氧化成磁性较小的铁氧化物(例如磁赤铁矿(γ-Fe2O3)),Fe3O4颗粒的记录保真度的可靠解释会大大减少,因此剩余磁化强度的变化可能具有重要的地质意义。在这里,我们使用环境透射电子显微镜和离轴电子全息照相的互补技术,诱导并可视化氧化对单个纳米级Fe3O4颗粒向γ-Fe2O3转变时的磁化的影响。磁感应图表明,在岩石中占主导地位的尺寸范围内,Fe3O4颗粒内的剩余磁化强度和方向都发生了变化,证实了氧化作用可以改变原始存储的磁信息。

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