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Fabrication and characterization of planar dipole antenna integrated with gaas based-schottky diode for on-chip electronic device application

机译:集成了基于gaas的肖特基二极管的平面偶极天线的制造与表征

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摘要

The design and RF characteristics of planar dipole antennas facilitated with coplanar waveguide (CPW) structure on semi-insulated GaAs are performed and confirmed to work in super high frequency (SHF) range. As expected, the fundamental resonant frequency shifts to higher frequency when the length of antenna decreases. Interestingly, the resonant frequencies of antenna are almost unchanged with the variation of antenna width and metal thickness. It is shown experimentally that return loss down to -54 dB with a metal thickness of 50 nm is obtainable. Preliminary investigation on design, fabrication, and DC and RF characteristics of the integrated device (planar dipole antenna + Schottky diode) on AlGaAs/GaAs HEMT structure is presented. From the preliminary direct irradiation experiments using the integrated device, the Schottky diode is not turned on due to weak reception of RF signal by dipole antenna. Further extensive considerations on the polarization of irradiation etc. need to be carried out in order to improve the signal reception. These preliminary results provide a new breakthrough for on-chip electronic device application in nanosystems.
机译:在半绝缘GaAs上采用共面波导(CPW)结构促进平面偶极天线的设计和RF特性,并证实其可在超高频(SHF)范围内工作。不出所料,当天线长度减小时,基本谐振频率将移至更高的频率。有趣的是,随着天线宽度和金属厚度的变化,天线的谐振频率几乎不变。实验表明,在金属厚度为50 nm的情况下,可以获得低至-54 dB的回波损耗。初步研究了在AlGaAs / GaAs HEMT结构上集成器件(平面偶极天线+肖特基二极管)的设计,制造以及DC和RF特性。根据使用集成设备进行的初步直接辐射实验,由于偶极天线对RF信号的接收较弱,因此未打开肖特基二极管。为了改善信号接收,需要对辐射的偏振等进行更广泛的考虑。这些初步结果为片上电子设备在纳米系统中的应用提供了新的突破。

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