论文标题

单轴铁电的拓扑两极化网络

Topological polarization networking in uniaxial ferroelectrics

论文作者

Tikhonov, Y., Maguire, J. R., McCluskey, C. J., McConville, J. P. V., Kumar, A., Meier, D., Razumnaya, A., Gregg, J. M., Gruverman, A., Vinokur, V. M., Luk'yanchuk, I.

论文摘要

拓扑两极化纹理的发现使铁电基因置于拓扑问题的边界。高对称的铁电氧化物材料允许极化矢量旋转的自由度为新兴的拓扑极性地层(例如涡流,天空,梅隆和跳跃)提供肥沃的地面。人们普遍认为,单轴铁电源不属于拓扑宇宙,因为强烈的各向异性为拓扑激发施加了无法克服的能源障碍。在这里,我们表明,单轴铁电源为形成拓扑极化网络的形成提供了独特的机会,该网络组成了分支相互交织的域,这些结构域具有相反的应对极化。我们报告说,它们具有物质的拓扑状态:拓扑受保护的碰撞的正面和尾巴到尾偏光域的纵横交错结构,从静电角度来看,数十年来一直被认为是不可能的。接口反向域的域壁是一个多连接的表面,在铁电的整个体积中传播。

Discovery of topological polarization textures has put ferroelectrics at the frontier of topological matter science. High-symmetry ferroelectric oxide materials allowing for freedom of the polarization vector rotation offer a fertile ground for emergent topological polar formations, like vortices, skyrmions, merons, and Hopfions. It has been commonly accepted that uniaxial ferroelectrics do not belong in the topological universe because strong anisotropy imposes insurmountable energy barriers for topological excitations. Here we show that uniaxial ferroelectrics provide unique opportunity for the formation of topological polarization networks comprising branching intertwined domains with opposite counterflowing polarization. We report that they host the topological state of matter: a crisscrossing structure of topologically protected colliding head-to-head and tail-to-tail polarization domains, which for decades has been considered impossible from the electrostatic viewpoint. The domain wall interfacing the counterflowing domains is a multiconnected surface, propagating through the whole volume of the ferroelectric.

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