Xia Yu, DeBenedictis Andrew A, Kim Dae Seok, Chen Shenglan, Kim Se-Um, Cleaver Douglas J, Atherton Timothy J, Yang Shu
Department of Materials Science and Engineering, University of Pennsylvania, Philadelphia, PA, 19104, USA.
Department of Physics and Astronomy, Tufts University, Medford, MA, 02155, USA.
Nat Commun. 2019 Nov 8;10(1):5104. doi: 10.1038/s41467-019-13012-9.
The director field adopted by a confined liquid crystal is controlled by a balance between the externally imposed interactions and the liquid's internal orientational elasticity. While the latter is usually considered to resist all deformations, liquid crystals actually have an intrinsic propensity to adopt saddle-splay arrangements, characterised by the elastic constant [Formula: see text]. In most realisations, dominant surface anchoring treatments suppress such deformations, rendering [Formula: see text] immeasurable. Here we identify regimes where more subtle, patterned surfaces enable saddle-splay effects to be both observed and exploited. Utilising theory and continuum calculations, we determine experimental regimes where generic, achiral liquid crystals exhibit spontaneously broken surface symmetries. These provide a new route to measuring [Formula: see text]. We further demonstrate a multistable device in which weak, but directional, fields switch between saddle-splay-motivated, spontaneously-polar surface states. Generalising beyond simple confinement, our highly scalable approach offers exciting opportunities for low-field, fast-switching optoelectronic devices which go beyond current technologies.
受限液晶所采用的指向矢场由外部施加的相互作用与液体内部取向弹性之间的平衡来控制。虽然通常认为后者会抵抗所有形变,但液晶实际上具有采用鞍形展曲排列的内在倾向,其特征由弹性常数[公式:见正文]表示。在大多数实际情况中,占主导的表面锚定处理会抑制这种形变,使得[公式:见正文]无法测量。在此,我们确定了一些情况,即更精细的图案化表面能够使鞍形展曲效应得以观察和利用。利用理论和连续介质计算,我们确定了普通非手性液晶表现出自发破缺表面对称性的实验情况。这些情况为测量[公式:见正文]提供了一条新途径。我们还展示了一种多稳态器件,其中微弱但有方向性的场在由鞍形展曲驱动的自发极化表面态之间切换。超越简单的受限情况进行推广,我们这种高度可扩展的方法为超越现有技术的低场快速切换光电器件提供了令人兴奋的机会。