Qin Peng, Wang Qian-Yu, Fu Jun-Heng, Li Chun-Wei, Zhang Cheng-Lin, Liu Tian-Ying, Gui Lin, Liu Jing, Deng Zhong-Shan
CAS Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
School of Future Technology, University of Chinese Academy of Sciences, Beijing 100049, China.
Materials (Basel). 2022 Feb 21;15(4):1599. doi: 10.3390/ma15041599.
This study presents a U-shaped dual-frequency-reconfigurable liquid-metal monopole antenna. Eutectic Gallium-Indium (EGaIn) was used as a conductive fluid and filled in the two branches of the U-shaped glass tube. A precision syringe pump was connected to one of the branches of the U-shaped tube by a silicone tube to drive EGaIn, forming a height difference between the two liquid levels. When the height of liquid metal in the two branches met the initial condition of = = 10 mm, and increased from 10 mm to 18 mm, the two branches obtained two working bandwidths of 2.27-4.98 GHz and 2.71-8.58 GHz, respectively. The maximum peak gain was 4.00 dBi. The initial amount of EGaIn also affected the available operating bandwidth. When the liquid metal was perfused according to the initial condition: = = 12 mm, and was adjusted within the range of 12-20 mm, the two branches had the corresponding working bandwidths of 2.18-4.32 GHz and 2.57-9.09 GHz, and the measured maximum peak gain was 3.72 dBi. The simulation and measurement data corresponded well. A series of dual-frequency-reconfigurable antennas can be obtained by changing the initial amount of EGaIn. This series of antennas may have broad application prospects in fields such as base stations and navigation.
本研究提出了一种U形双频可重构液态金属单极天线。共晶镓铟(EGaIn)被用作导电流体,并填充在U形玻璃管的两个分支中。一个精密注射泵通过硅胶管连接到U形管的一个分支上,以驱动EGaIn,在两个液面之间形成高度差。当两个分支中液态金属的高度满足初始条件 = = 10毫米,且 从10毫米增加到18毫米时,两个分支分别获得了2.27 - 4.98吉赫兹和2.71 - 8.58吉赫兹的两个工作带宽。最大峰值增益为4.00 dBi。EGaIn的初始量也会影响可用的工作带宽。当按照初始条件: = = 12毫米灌注液态金属,并且 在12 - 20毫米范围内调整时,两个分支具有相应的工作带宽2.18 - 4.32吉赫兹和2.57 - 9.09吉赫兹,测量得到的最大峰值增益为3.72 dBi。仿真和测量数据吻合良好。通过改变EGaIn的初始量可以获得一系列双频可重构天线。这一系列天线在基站和导航等领域可能具有广阔的应用前景。