Alibakhshikenari Mohammad, Virdee Bal S, See Chan H, Shukla Pancham, Salekzamankhani Shahram, Abd-Alhameed Raed A, Falcone Francisco, Limiti Ernesto
Electronic Engineering Department, University of Rome "Tor Vergata", Via del Politecnico 1, 00133, Rome, Italy.
Center for Communications Technology, School of Computing and Digital Media, London Metropolitan University, London, N7 8DB, UK.
Sci Rep. 2020 Jul 3;10(1):11034. doi: 10.1038/s41598-020-68105-z.
A feasibility study is presented on the performance parameters of a novel on-chip antenna based on metasurface technology at terahertz band. The proposed metasurface on-chip antenna is constructed on an electrically thin high-permittivity gallium arsenide (GaAs) substrate layer. Metasurface is implemented by engraving slot-lines on an array of 11 × 11 circular patches fabricated on the top layer of the GaAs substrate and metallic via-holes implemented in the central patch of each row constituting the array, which connects the patch to the leaky-wave open-ended feeding slot-lines running underneath the patches. The slot-lines are connected to each other with a slit. A waveguide port is used to excite the array via slot-lines that couple the electromagnetic energy to the patches. The metasurface on-chip antenna is shown to exhibit an average measured gain in excess of 10 dBi and radiation efficiency above 60% over a wide frequency range from 0.41 to 0.47 THz, which is significant development over other on-chip antenna techniques reported to date. Dimensions of the antenna are 8.6 × 8.6 × 0.0503 mm. The results show that the proposed GaAs-based metasurface on-chip antenna is viable for applications in terahertz integrated circuits.
本文介绍了一种基于太赫兹波段超表面技术的新型片上天线性能参数的可行性研究。所提出的超表面片上天线构建在一个电薄的高介电常数砷化镓(GaAs)衬底层上。超表面是通过在GaAs衬底顶层制作的11×11圆形贴片阵列上刻蚀缝隙线,并在构成阵列的每行中央贴片上实现金属通孔来实现的,该通孔将贴片连接到在贴片下方运行的漏波开放式馈电缝隙线。缝隙线通过一个狭缝相互连接。一个波导端口用于通过将电磁能量耦合到贴片的缝隙线来激励阵列。结果表明,该超表面片上天线在0.41至0.47太赫兹的宽频率范围内,平均测量增益超过10 dBi,辐射效率高于60%,这是相对于迄今报道的其他片上天线技术的重大进展。天线尺寸为8.6×8.6×0.0503毫米。结果表明,所提出的基于GaAs的超表面片上天线在太赫兹集成电路应用中是可行的。