Jožef Stefan Institute, Ljubljana, Slovenia.
University of Ljubljana, Faculty of Mathematics and Physics, Ljubljana, Slovenia.
Nat Commun. 2023 May 25;14(1):3029. doi: 10.1038/s41467-023-38749-2.
The recently discovered ferroelectric nematic liquids incorporate to the functional combination of fluidity, processability and anisotropic optical properties of nematic liquids, an astonishing range of physical properties derived from the phase polarity. Among them, the remarkably large values of second order optical susceptibility encourage to exploit these new materials for non-linear photonic applications. Here we show that photopatterning of the alignment layer can be used to structure polarization patterns. To do so, we take advantage of the flexoelectric effect and design splay structures that geometrically define the polarization direction. We demonstrate the creation of periodic polarization structures and the possibility of guiding polarization by embedding splay structures in uniform backgrounds. The demonstrated capabilities of polarization patterning, open a promising new route for the design of ferroelectric nematic based photonic structures and their exploitation.
最近发现的铁电向列液晶将向列液晶的流动性、可加工性和各向异性光学性质的功能组合中,加入了一系列令人惊讶的源自于相极性的物理性质。其中,二阶光学灵敏度的显著值鼓励利用这些新材料来开发非线性光子学应用。在这里,我们表明,通过光图案化对准层可以用于构建偏振图案。为此,我们利用了挠曲电效应,并设计了用于几何定义偏振方向的倾斜结构。我们展示了周期性偏振结构的创建以及通过在均匀背景中嵌入倾斜结构来引导偏振的可能性。所展示的偏振图案化能力,为基于铁电向列的光子结构的设计及其利用开辟了一条有前途的新途径。