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Magnetic and electronic properties of magnetite across the high pressure anomaly

机译:磁铁矿在高压异常中的磁性和电子性质

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摘要

The magnetite Fe3O4, being anciently known magnetic material to human kind and remaining in leading positions for development of advanced technologies presently, demonstrates a number of puzzling physical phenomena, being at focus of extensive research for more than century. Recently the pressure-induced anomalous behavior of physical properties of magnetite in vicinity of the structural phase transition, occurring at P ~ 25–30 GPa, has attracted particular attention, and its nature remains unclear. Here we study the magnetic and electronic properties of magnetite across high pressure anomaly and in the pressure-induced phase by means of 57Fe synchrotron Moessbauer spectroscopy and neutron diffraction. The hyperfine interaction parameters behavior was systematically analysed over pressure 0–40 GPa and temperature 10–290 K ranges. In the high pressure phase the ferrimagnetic order formation below TNP ~ 420 K was observed and spin arrangement symmetry was deduced. The structural, magnetic and electronic phase diagram of magnetite in the discussed pressure range is established.
机译:磁铁矿Fe3O4是人类最古老的磁性材料,目前在先进技术的开发中处于领先地位,它显示出许多令人费解的物理现象,是一个多世纪以来广泛研究的重点。最近,在P〜25–30 GPa的压力下,磁铁矿在结构相变附近的物理性质的异常行为引起了人们的特别关注,其性质仍不清楚。本文通过 57 Fe同步加速器Moessbauer光谱和中子衍射研究了高压异常和压力诱导相中磁铁矿的磁性和电子性质。系统分析了在0–40 GPa的压力和10–290 K的温度范围内的超精细相互作用参数行为。在高压相中,观察到TNP〜420 K以下的亚铁磁有序形成,并推断出自旋排列对称性。建立了所讨论压力范围内磁铁矿的结构,磁和电子相图。

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