论文标题
铁电和铁弹性中平面内域构型和域壁运动的光学控制
Optical control of in-plane domain configuration and domain wall motion in ferroelectric and ferroelastic
论文作者
论文摘要
铁电域壁对外部刺激的敏感性使它们在纳米电子设备中的功能实体。具体而言,光学驱动的结构域与面内极化是有利的,因此高度搜寻。在这里,我们显示了模仿单个结构域状态的平面内偏光亚域,以及在铁电batio3的单晶中对其结构域壁运动的可逆光控制。非极性铁弹性材料的域构型中的相似光学控制表明,远程铁电偏振对于域壁运动的光学控制并不是必需的。取而代之的是,发现挠性电脑是对域配置的光学控制的重要成分,因此,铁弹性材料将是纳米电子设备应用的另一个可能的候选。
The sensitivity of ferroelectric domain walls to external stimuli makes them functional entities in nanoelectronic devices. Specifically, optically driven domain reconfiguration with in-plane polarization is advantageous and thus highly sought. Here, we show the existence of in-plane polarized sub-domains imitating a single domain state and reversible optical control of its domain wall movement in a single-crystal of ferroelectric BaTiO3. Similar optical control in the domain configuration of non-polar ferroelastic material indicates long-range ferroelectric polarization is not essential for the optical control of domain wall movement. Instead, flexoelectricity is found to be an essential ingredient for the optical control of the domain configuration and hence, ferroelastic materials would be another possible candidate for nanoelectronic device applications.