Yu Jian-Ping, Chen Sai, Fan Fei, Cheng Jie-Rong, Xu Shi-Tong, Wang Xiang-Hui, Chang Sheng-Jiang
Opt Express. 2018 Jan 22;26(2):663-673. doi: 10.1364/OE.26.000663.
In this work, the optically anisotropic property of dual-frequency liquid crystals (DFLC) in terahertz (THz) regime has been experimentally investigated, which indicates that the refractive index and birefringence of DFLC can be continuously modulated by both the alternating frequency and intensity of the alternating electric field. This tunability originates from the rotation of DFLC molecules induced by alternating electric fields. The results show that by modulating the alternating frequency from 1 kHz to 100 kHz under 30 kV/m electric field, the 600 μm thickness DFLC cell can play as a tunable quarter-wave plate above 0.68 THz, or a half-wave plate above 1.33 THz. Besides, it can be viewed as a tunable THz phase shifter from 0 to π. Therefore, due to its novel tuning mechanism, DFLC will be of great significance in dynamic manipulating on THz phase and polarization.
在这项工作中,对双频液晶(DFLC)在太赫兹(THz)波段的光学各向异性特性进行了实验研究,这表明DFLC的折射率和双折射可以通过交变电场的交变频率和强度进行连续调制。这种可调性源于交变电场引起的DFLC分子的旋转。结果表明,在30 kV/m的电场下,通过将交变频率从1 kHz调制到100 kHz,600μm厚的DFLC盒在高于0.68 THz时可作为可调谐四分之一波片,在高于1.33 THz时可作为半波片。此外,它还可被视为从0到π的可调谐太赫兹移相器。因此,由于其新颖的调谐机制,DFLC在太赫兹相位和偏振的动态操纵中将具有重要意义。