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磁场诱导多铁性材料中的电极化反转与记忆效应

Electric polarization reversal and memory in a multiferroic material induced by magnetic fields.

作者信息

Hur N, Park S, Sharma P A, Ahn J S, Guha S, Cheong S-W

机构信息

Department of Physics & Astronomy, Rutgers University, Piscataway, New Jersey 08854, USA.

出版信息

Nature. 2004 May 27;429(6990):392-5. doi: 10.1038/nature02572.

Abstract

Ferroelectric and magnetic materials are a time-honoured subject of study and have led to some of the most important technological advances to date. Magnetism and ferroelectricity are involved with local spins and off-centre structural distortions, respectively. These two seemingly unrelated phenomena can coexist in certain unusual materials, termed multiferroics. Despite the possible coexistence of ferroelectricity and magnetism, a pronounced interplay between these properties has rarely been observed. This has prevented the realization of multiferroic devices offering such functionality. Here, we report a striking interplay between ferroelectricity and magnetism in the multiferroic TbMn2O5, demonstrated by a highly reproducible electric polarization reversal and permanent polarization imprint that are both actuated by an applied magnetic field. Our results point to new device applications such as magnetically recorded ferroelectric memory.

摘要

铁电材料和磁性材料是一个历史悠久的研究课题,并且已经带来了一些迄今为止最重要的技术进步。磁性和铁电性分别与局域自旋和结构中心偏移畸变有关。这两种看似不相关的现象可以共存于某些特殊材料中,即所谓的多铁性材料。尽管铁电性和磁性可能共存,但这些特性之间显著的相互作用却很少被观察到。这阻碍了具有此类功能的多铁性器件的实现。在此,我们报道了多铁性材料TbMn2O5中铁电性和磁性之间显著的相互作用,这通过由外加磁场驱动的高度可重复的电极化反转和永久极化印记得以证明。我们的研究结果指向了诸如磁记录铁电存储器等新的器件应用。

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