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Unusual static and dynamical characteristics of domain evolution in ferroelectric superlattices

机译:铁电超晶格中畴演化的异常静态和动力学特征

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摘要

The evolution from nanostripes to monodomains is explored in ferroelectric BaTiO_3/SrTiO_3 (BT/ST) superlattices under dc and ac electric fields via the use of a first-principles-based technique. Such evolution involves original states that result in the decoupling of (static and dynamical) properties between BT versus ST layers. For instance, domain walls of nanostripes move at a different speed inside BT versus ST layers, and one intermediate state consists of three-dimensional nanobubbles inside BT layers coexisting with a monodomain inside ST layers. Moreover, velocities of domain walls of nanostripes and nanobubbles are determined as a function of the magnitude and frequency of the applied electric field. The domain-wall motion in BT and ST layers is found to follow a previously determined equation at small fields. On the other hand, velocities of domain walls of nanostripes and nanobubbles are found to obey a different empirical law at higher fields.
机译:通过使用基于第一原理的技术,在直流和交流电场下的铁电BaTiO_3 / SrTiO_3(BT / ST)超晶格中探索了从纳米带到单畴的演变。这种演变涉及原始状态,这些状态导致BT层与ST层之间的(静态和动态)属性解耦。例如,纳米带的畴壁在BT层与ST层内部以不同的速度运动,并且一种中间状态由BT层内部的三维纳米气泡与ST层内部的单畴共存。此外,纳米带和纳米气泡的畴壁的速度被确定为所施加电场的大小和频率的函数。发现BT和ST层中的畴壁运动遵循小场上先前确定的方程。另一方面,发现纳米带和纳米气泡的畴壁的速度在更高的场服从不同的经验定律。

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