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铁电和铁弹性材料中面内畴结构与畴壁运动的光学控制

Optical Control of In-Plane Domain Configuration and Domain Wall Motion in Ferroelectric and Ferroelastic Materials.

作者信息

Dwij Vivek, De Binoy, Kunwar Hemant Singh, Rana Sumesh, Velpula Praveen, Shukla Dinesh K, Gupta Mayanak Kumar, Mittal Ranjan, Pal Subhajit, Briscoe Joe, Sathe Vasant G

机构信息

UGC-DAE Consortium for Scientific Research, Indore 452001, India.

Solid State Physics Division, Bhabha Atomic Research Center, Mumbai 400 085, India.

出版信息

ACS Appl Mater Interfaces. 2024 Jul 3;16(26):33752-33762. doi: 10.1021/acsami.4c02901. Epub 2024 Jun 20.

Abstract

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 is highly sought. Here, we show the existence of in-plane polarized subdomains imitating a single domain state and reversible optical control of its domain wall movement in a single-crystal of ferroelectric BaTiO. Similar optical control in the domain configuration of nonpolar ferroelastic material indicates that 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.

摘要

铁电畴壁对外部刺激的敏感性使其成为纳米电子器件中的功能实体。具体而言,具有面内极化的光驱动畴重构具有优势,因此备受关注。在此,我们展示了在铁电BaTiO单晶中存在模仿单畴状态的面内极化亚畴,以及对其畴壁运动的可逆光学控制。在非极性铁弹性材料的畴结构中进行的类似光学控制表明,长程铁电极化对于畴壁运动的光学控制并非必不可少。相反,发现挠曲电是畴结构光学控制的关键因素,因此,铁弹性材料将是纳米电子器件应用的另一种可能候选材料。

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