论文标题

可逆控制的三元极性状态和铁电偏置通过增强方形 - 应变促进

Reversibly controlled ternary polar states and ferroelectric bias promoted by boosting square-tensile-strain

论文作者

Lee, Jun Han, Duong, Nguyen Xuan, Jung, Min-Hyoung, Lee, Hyun-Jae, Kim, Ahyoung, Yeo, Youngki, Kim, Junhyung, Kim, Gye-Hyeon, Cho, Byeong-Gwan, Kim, Jaegyu, Naqvi, Furqan Ul Hassan, Bae, Jong-Seong, Kim, Jeehoon, Ahn, Chang Won, Kim, Young-Min, Song, Tae Kwon, Ko, Jae-Hyeon, Koo, Tae-Yeong, Sohn, Changhee, Park, Kibog, Yang, Chan-Ho, Yang, Sang Mo, Lee, Jun Hee, Jeong, Hu Young, Kim, Tae Heon, Oh, Yoon Seok

论文摘要

偶极子之间的相互作用通常会出现有趣的物理现象,例如磁异质结构中的交换偏差和多效中的磁电效应,这导致了多功能异质结构的进步。然而,缺陷 - 往往被认为是不希望的,以使电子功能恶化。在这里,我们报告了铁电和捏状状态之间的确定性切换,通过利用新的Cutic Perovskite,Bazro $ _ {3} $的新基质,该基质将方形 - 荷兰$ _ {3} $促进了方形 - 荷兰$ _ {3} $,并促进四范围内置的跨平面式极化氧化与牛yygengenter creation xyy creation creation creation creation creation creation creation creation creation creation creation creation creation creation creation creation。第一原理计算提出了一个氧气空缺的复合物和两个ti $^{3+} $ ions的代码,一个电荷中性缺陷 - 偶极性。缺陷 - 偶极和自发极化的合作控制揭示了以偏置/捏性滞后环为特征的三元面内极状态。此外,我们在实验上证明了三个电气控制的极性状态导致可切换和非挥发介电状态用于应用非破坏性电射电位记忆。这一发现为通过操纵缺陷 - 脱极仪开发功能材料的新途径开辟了新的途径,并提供了一个新颖的平台,以使异源性超越普遍的钙钛矿基板脱离。

Interaction between dipoles often emerges intriguing physical phenomena, such as exchange bias in the magnetic heterostructures and magnetoelectric effect in multiferroics, which lead to advances in multifunctional heterostructures. However, the defect-dipole tends to be considered the undesired to deteriorate the electronic functionality. Here, we report deterministic switching between the ferroelectric and the pinched states by exploiting a new substrate of cubic perovskite, BaZrO$_{3}$, which boosts square-tensile-strain to BaTiO$_{3}$ and promotes four-variants in-plane spontaneous polarization with oxygen vacancy creation. First-principles calculations propose a complex of an oxygen vacancy and two Ti$^{3+}$ ions coins a charge-neutral defect-dipole. Cooperative control of the defect-dipole and the spontaneous polarization reveals ternary in-plane polar states characterized by biased/pinched hysteresis loops. Furthermore, we experimentally demonstrate that three electrically controlled polar-ordering states lead to switchable and non-volatile dielectric states for application of non-destructive electro-dielectric memory. This discovery opens a new route to develop functional materials via manipulating defect-dipoles and offers a novel platform to advance heteroepitaxy beyond the prevalent perovskite substrates.

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