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Coupled ferroelectric polarization and magnetization in spinel FeCr2S4

机译:尖晶石FeCr2S4中的铁电极化和磁化耦合

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摘要

One of the core issues for multiferroicity is the strongly coupled ferroelectric polarization and magnetization, while so far most multiferroics have antiferromagnetic order with nearly zero magnetization. Magnetic spinel compounds with ferrimagnetic order may be alternative candidates offering large magnetization when ferroelectricity can be activated simultaneously. In this work, we investigate the ferroelectricity and magnetism of spinel FeCr2S4 in which the Fe2+ sublattice and Cr3+ sublattice are coupled in antiparallel alignment. Well defined ferroelectric transitions below the Fe2+ orbital ordering termperature Too = 8.5 K are demonstrated. The ferroelectric polarization has two components. One component arises mainly from the noncollinear conical spin order associated with the spin-orbit coupling, which is thus magnetic field sensitive. The other is probably attributed to the Jahn-Teller distortion induced lattice symmetry breaking, occuring below the orbital ordering of Fe2+. Furthermore, the coupled ferroelectric polarization and magnetization in response to magnetic field are observed. The present work suggests that spinel FeCr2S4 is a multiferroic offering both ferroelectricity and ferrimagnetism with large net magnetization.
机译:多铁性的核心问题之一是强耦合的铁电极化和磁化,而到目前为止,大多数多铁具有反铁磁阶,磁化几乎为零。当可以同时激活铁电时,具有亚铁磁性序的尖晶石化合物可能会提供较大的磁化强度。在这项工作中,我们研究了尖晶石FeCr2S4的铁电和磁性,其中Fe 2 + 子晶格和Cr 3 + 子晶格以反平行排列方式耦合。证明了在Fe 2 + 轨道有序温度Too = 8.5 K以下的铁电跃迁。铁电极化具有两个分量。一个分量主要来自与自旋轨道耦合相关的非共线圆锥形自旋次序,因此对磁场敏感。另一个可能是由于Jahn-Teller变形引起的晶格对称性破坏,发生在Fe 2 + 的轨道有序以下。此外,观察到响应于磁场的耦合的铁电极化和磁化。目前的工作表明尖晶石FeCr2S4是一种多铁性材料,具有大的净磁化强度,同时提供铁电性和亚铁磁性。

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