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Magnetic induction mapping of magnetite chains in magnetotactic bacteria at room temperature and close to the Verwey transition using electron holography

机译:使用电子全息图在室温下接近Verwey转变的趋磁细菌中磁铁矿链的磁感应图

摘要

Off-axis electron holography in the transmission electron microscope is used to record magnetic induction maps of closely spaced magnetite crystals in magnetotactic bacteria at room temperature and after cooling the sample using liquid nitrogen. The magnetic microstructure is related to the morphology and crystallography of the particles, and to interparticle interactions. At room temperature, the magnetic signal is dominated by interactions and shape anisotropy, with highly parallel and straight field lines following the axis of each chain of crystals closely. In contrast, at low temperature the magnetic induction undulates along the length of the chain. This behaviour may result from a competition between interparticle interactions and an easy axis of magnetisation that is no longer parallel to the chain axis. The quantitative nature of electron holography also allows the change in magnetisation in the crystals with temperature to be measured.
机译:透射电子显微镜中的离轴电子全息术用于在室温下以及在使用液氮冷却样品后,记录趋磁细菌中紧密排列的磁铁矿晶体的磁感应图。磁性微结构与颗粒的形态和晶体学以及颗粒间的相互作用有关。在室温下,磁信号受相互作用和形状各向异性的支配,高度平行和笔直的电场线紧紧跟随晶体的每条链的轴。相反,在低温下,磁感应沿链的长度波动。此行为可能是由于粒子间相互作用与不再平行于链轴的易磁化轴之间的竞争所致。电子全息术的定量性质还允许测量晶体中的磁化强度随温度的变化。

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