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从极涡晶格中涌现的铁电开关行为。

Emergent Ferroelectric Switching Behavior from Polar Vortex Lattice.

机构信息

Department of Materials Science and Engineering, University of California Berkeley, Berkeley, CA, 94720, USA.

Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.

出版信息

Adv Mater. 2023 Jun;35(23):e2208367. doi: 10.1002/adma.202208367. Epub 2023 Apr 27.

Abstract

Topologically protected polar textures have provided a rich playground for the exploration of novel, emergent phenomena. Recent discoveries indicate that ferroelectric vortices and skyrmions not only host properties markedly different from traditional ferroelectrics, but also that these properties can be harnessed for unique memory devices. Using a combination of capacitor-based capacitance measurements and computational models, it is demonstrated that polar vortices in dielectric-ferroelectric-dielectric trilayers exhibit classical ferroelectric bi-stability together with the existence of low-field metastable polarization states. This behavior is directly tied to the in-plane vortex ordering, and it is shown that it can be used as a new method of non-destructive readout-out of the poled state.

摘要

拓扑保护的极向纹理为探索新颖的涌现现象提供了丰富的研究领域。最近的发现表明,铁电涡旋和斯格明子不仅具有明显不同于传统铁电体的特性,而且这些特性可以被用于独特的存储器件。通过基于电容器的电容测量和计算模型的组合,证明了介电-铁电-介电三层膜中的极向涡旋表现出经典铁电双稳性,同时存在低场亚稳极化状态。这种行为与平面内涡旋有序直接相关,并且表明它可以用作极化态的非破坏性读出的新方法。

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