Wu Yang, Ruan Xuezhong, Chen Chih-Hsin, Shin Young Jun, Lee Youngbin, Niu Jing, Liu Jingbo, Chen Yuanfu, Yang Kun-Lin, Zhang Xinhai, Ahn Jong-Hyun, Yang Hyunsoo
Opt Express. 2013 Sep 9;21(18):21395-402. doi: 10.1364/OE.21.021395.
Due to its high electrical conductivity and excellent transmittance at terahertz frequencies, graphene is a promising candidate as transparent electrodes for terahertz devices. We demonstrate a liquid crystal based terahertz phase shifter with the graphene films as transparent electrodes. The maximum phase shift is 10.8 degree and the saturation voltage is 5 V with a 50 µm liquid crystal cell. The transmittance at terahertz frequencies and electrical conductivity depending on the number of graphene layer are also investigated. The proposed phase shifter provides a continuous tunability, fully electrical controllability, and low DC voltage operation.
由于石墨烯在太赫兹频率下具有高电导率和出色的透射率,它是一种很有前景的太赫兹器件透明电极候选材料。我们展示了一种以石墨烯薄膜作为透明电极的基于液晶的太赫兹移相器。对于一个50微米的液晶盒,最大相移为10.8度,饱和电压为5伏。还研究了太赫兹频率下的透射率以及取决于石墨烯层数的电导率。所提出的移相器具有连续可调性、完全电控性以及低直流电压操作特性。