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Magnetostriction-polarization coupling in multiferroic Mn2MnWO6

机译:多铁性Mn2MnWO6中的磁致伸缩-极化耦合

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摘要

Double corundum-related polar magnets are promising materials for multiferroic and magnetoelectric applications in spintronics. However, their design and synthesis is a challenge, and magnetoelectric coupling has only been observed in Ni3TeO6 among the known double corundum compounds to date. Here we address the high-pressure synthesis of a new polar and antiferromagnetic corundum derivative Mn2MnWO6, which adopts the Ni3TeO6-type structure with low temperature first-order field-induced metamagnetic phase transitions (T N = 58 K) and high spontaneous polarization (~ 63.3 μC·cm−2). The magnetostriction-polarization coupling in Mn2MnWO6 is evidenced by second harmonic generation effect, and corroborated by magnetic-field-dependent pyroresponse behavior, which together with the magnetic-field-dependent polarization and dielectric measurements, qualitatively indicate magnetoelectric coupling. Piezoresponse force microscopy imaging and spectroscopy studies on Mn2MnWO6 show switchable polarization, which motivates further exploration on magnetoelectric effect in single crystal/thin film specimens.
机译:与双刚玉有关的极性磁体是自旋电子学中多铁性和磁电应用中很有希望的材料。然而,它们的设计和合成是一个挑战,迄今为止,在已知的双刚玉化合物中,仅在Ni3TeO6中观察到了磁电耦合。在这里,我们讨论高压合成的新型极性和反铁磁刚玉衍生物Mn2MnWO6,它采用具有低温一阶磁场感应的亚磁相变(TN = 58 K)和高自发极化(〜63.3)的Ni3TeO6型结构。 μC·cm -2 )。 Mn2MnWO6中的磁致伸缩-极化耦合由二次谐波产生效应证明,并由磁场相关的热敏响应特性(与磁场相关的极化和介电测量值一起)定性地表明了磁电耦合。 Mn2MnWO6的压电响应力显微镜成像和光谱研究显示出可切换的极化,这激发了对单晶/薄膜样品中磁电效应的进一步探索。

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