Suryantari Risti, Shih Yi-Hong, Shih Yu-Han, Chen Hui-Yu, Wu Cen-Shawn, Huang Chia-Yi
Opt Lett. 2023 Jan 1;48(1):77-80. doi: 10.1364/OL.475938.
This work uses surface acoustic waves (SAWs) that are generated by a piezoelectric substrate containing an interdigital transducer (IDT) to which a low voltage of 2 mV was applied at a frequency of 1 kHz to fabricate a polymer-stabilized blue phase liquid crystal (PS-BPLC) layer. The PS-BPLC layer has a more uniform optical microscope (OM) image at a voltage of 2 mV than at zero voltage, and its reflective spectrum exhibits a smaller full width at half maximum (FWHM) at the former than at the latter. The uniform OM image and small FWHM reveal that the lattices in the PS-BPLC layer have monodomain structure. The monodomain PS-BPLC layer is formed because the SAWs cause longitudinal and transverse vibrations of the PS-BPLC lattices in the vertical plane along their traveling direction. The proposed method for fabricating the monodomain PS-BPLC layer using the SAWs has potential for the development of reflective optical devices that consume low power during their fabrication.
这项工作利用由包含叉指换能器(IDT)的压电基板产生的表面声波(SAW),在1 kHz频率下向其施加2 mV的低电压,以制造聚合物稳定的蓝相液晶(PS-BPLC)层。与零电压时相比,PS-BPLC层在2 mV电压下具有更均匀的光学显微镜(OM)图像,并且其反射光谱在前一种情况下的半高全宽(FWHM)比后一种情况更小。均匀的OM图像和小的FWHM表明PS-BPLC层中的晶格具有单畴结构。形成单畴PS-BPLC层是因为表面声波会使PS-BPLC晶格在垂直平面内沿其传播方向产生纵向和横向振动。所提出的利用表面声波制造单畴PS-BPLC层的方法对于开发在制造过程中消耗低功率的反射光学器件具有潜力。