挠曲电
铁电性
极化(电化学)
亚稳态
材料科学
凝聚态物理
极化密度
纳米技术
光电子学
物理
液晶
电介质
磁场
化学
量子力学
物理化学
磁化
作者
Ji Hye Lee,Hong Joon Kim,Jiyong Yoon,Sanghyeon Kim,Jeong Rae Kim,Wei Peng,Se Young Park,Tae Won Noh,Daesu Lee
标识
DOI:10.1103/physrevlett.129.117601
摘要
Flexoelectricity-based mechanical switching of ferroelectric polarization has recently emerged as a fascinating alternative to conventional polarization switching using electric fields. Here, we demonstrate hyperefficient mechanical switching of polarization exploiting metastable ferroelectricity that inherently holds a unique mechanical response. We theoretically predict that mechanical forces markedly reduce the coercivity of metastable ferroelectricity, thus greatly bolstering flexoelectricity-driven mechanical polarization switching. As predicted, we experimentally confirm the mechanical polarization switching via an unusually low mechanical force (100 nN) in metastable ferroelectric CaTiO_{3}. Furthermore, the use of low mechanical forces narrows the width of mechanically writable nanodomains to sub-10 nm, suggesting an ultrahigh data storage density of ≥1 Tbit cm^{-2}. This Letter sheds light on the mechanical switching of ferroelectric polarization as a viable key element for next-generation efficient nanoelectronics and nanoelectromechanics.
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