ПРИЧИНА МЕТАМАГНИТНОГО ПЕРЕХОДА В EuMn0,5Co0,5O3

И. О. Троянчук, М. В. Бушинский, Н. В. Терешко, А. Н. Чобот, О. С. Мантыцкая, Г. М. Чобот, В. М. Добрянский, С. Н. Пастушонок
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Abstract

The magnetic properties of perovskite EuMn0.5Co0.5O3, obtained under different synthesis conditions, have been studied. It is shown that the sample obtained at 1500 °C exhibits a metamagnetic transition, whereas in the sample obtained at 1200 °C, the field dependence of magnetization as in a ferromagnet was observed. The both samples have TC = 123 K and approximately equal to magnetization in large magnetic fields. Metamagnetism is associated with a transition from a noncollinear to a collinear magnetic phase, whereas the presence of clusters with the ordering of Co2+ and Mn4+ ions leads to ferromagnetism. The noncollinear phase is formed due to the competition of positive Co2+–Mn4+ and negative Mn4+–Mn4+, Co2+–Co2+ interactions and due to large magnetic anisotropy.
研究了在不同合成条件下制备的钙钛矿EuMn0.5Co0.5O3的磁性能。结果表明,在1500℃下获得的样品表现出一个偏磁转变,而在1200℃下获得的样品中,观察到磁化强度与铁磁体中的场依赖性。两种样品的TC = 123 K,在大磁场下磁化强度近似相等。超磁与从非共线磁相到共线磁相的转变有关,而Co2+和Mn4+离子有序团簇的存在导致铁磁性。非共线相的形成是由于正的Co2+ -Mn4 +和负的Mn4+ -Mn4 +、Co2+ -Co2 +相互作用的竞争以及较大的磁各向异性。
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