Tien Chuen-Lin, Lin Rong-Ji, Kang Chi-Chung, Huang Bing-Yau, Kuo Chie-Tong, Huang Shuan-Yu
Department of Electrical Engineering, Feng Chia University, Taichung 40724, Taiwan.
Ph.D. Program of Electrical and Communications Engineering, Feng Chia University, Taichung 40724, Taiwan..
Polymers (Basel). 2019 Jun 16;11(6):1051. doi: 10.3390/polym11061051.
This research applies the non-linear effect of azo dye-doped liquid crystal materials to develop a small, simple, and adjustable beam-splitting component with grating-like electrodes. Due to the dielectric anisotropy and optical birefringence of nematic liquid crystals, the director of the liquid crystal molecules can be reoriented by applying external electric fields, causing a periodic distribution of refractive indices and resulting in a diffraction phenomenon when a linearly polarized light is introduced. The study also discusses the difference in the refractive index (), the concentration of azo dye, and the rising constant depending on the diffraction signals. The experimental results show that first-order diffraction efficiency can reach ~18% with 0.5 wt % azo dye (DR-1) doped in the nematic liquid crystals.
本研究应用偶氮染料掺杂液晶材料的非线性效应,开发一种带有光栅状电极的小型、简单且可调节的分束组件。由于向列型液晶的介电各向异性和光学双折射特性,施加外部电场时液晶分子的指向矢可重新取向,导致折射率呈周期性分布,当引入线偏振光时会产生衍射现象。该研究还讨论了取决于衍射信号的折射率()、偶氮染料浓度和上升常数的差异。实验结果表明,向列型液晶中掺杂0.5 wt%的偶氮染料(DR-1)时,一阶衍射效率可达~18%。