论文标题

在二维铁电源中,域壁滑动引起的极化开关

Polarization switching induced by domain wall sliding in two-dimensional ferroelectric monochalcogenides

论文作者

Petralanda, Urko, Olsen, Thomas

论文摘要

在极化的不同状态之间切换的能力包括铁电的定义特性。但是,尚不清楚负责开关的微观机制,并且基于连贯的单域切换的理论估计通常通过数量级高估了实验确定的强制性强制性。在这项工作中,我们介绍了二维铁电,GESE,GESE,SNS和SNSE的域壁(DWS)的详细第一原理表征。特别是,我们计算180和90 dWs的形成能和迁移屏障,然后在高度化切换介导DW迁移中介导了极化场的一般表达。我们将方法应用于所研究的材料,并与实验强制场达成良好的一致性。计算出的强制场最多要比GESE,SNS和SNSE中的连贯单域切换所预测的数量级高两个数量级。最后,我们研究了化合物的光学特性,发现180 dws的存在导致吸收光谱的显着红移,这意味着DWS的密度可以通过简单的光学探针的方式确定。

The ability to switch between distinct states of polarization comprises the defining property of ferroelectrics. However, the microscopic mechanism responsible for switching is not well understood and theoretical estimates based on coherent monodomain switching typically overestimate experimentally determined coercive fields by orders of magnitude. In this work we present a detailed first principles characterization of domain walls (DWs) in two-dimensional ferroelectric GeS, GeSe, SnS and SnSe. In particular, we calculate the formation energies and migration barriers for 180 and 90 DWs, and then derive a general expression for the coercive field assuming that polarization switching is mediated by DW migration. We apply our approach to the materials studied and obtain good agreement with experimental coercive fields. The calculated coercive fields are up to two orders of magnitude smaller than those predicted from coherent monodomain switching in GeSe, SnS and SnSe. Finally, we study the optical properties of the compounds and find that the presence of 180 DWs leads to a significant red shift of the absorption spectrum, implying that the density of DWs may be determined by means of simple optical probes.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源