标题: THz辐射光导天线阵列之研制与特性
Fabrication and Characteristics of Photoconductive Dipole Antenna Array for Emission of THz Radiation
作者: 黄照仁
Chao Jen Huang
潘犀灵
Ci-Ling Pan
光电工程学系
关键字: 光导天线;天线阵列;THz;Photoconductive antenna;antenna array
公开日期: 2004
摘要:   本论文主要在探讨光导天线阵列元件的特性。由于,单一天线很容易在光太强的情况之下就饱和,因此本论文制做天线阵列克服此问题。我们已经成功的制做阵列式的光导天线,利用我们设计出来的光导天线阵列,以光导天线阵列上各单一天线辐射出的THz互相干涉,来增强远场的THz辐射,进而达到在不让元件饱和的情况下,能辐射出更强的THz。我们模拟推导了天线阵列的远场结果,用程式的计算和我们量测的结果做比较,明显得到加强讯号的效果。另外,我们比较了单一天线和设计出来的天线阵列的量测结果,说明天线阵列的讯号强度比单一天线的讯号强度更为加强。
  以半绝缘性砷化镓和砷离子布值砷化镓(50,100,200 KeV)做为基板,其中砷离子布值的浓度为5E15,布植完后,经过三十分钟600□C的退火制程。利用适合小线宽的正光阻AZ6112以光阻厚度约12000Å,搭配镀上Ni:Ge:Au合金(300 Å:700 Å:1000Å),成功的制做出天线阵列。
  利用光脉冲约130fs、波长为800nm的被动锁模(使用饱和吸收体)钛蓝宝石雷射做为光源,使用光导天线,搭配锁相放大器和步进马达来做量测。运用自行架设的光纤,将雷射光导进天线阵列。从时域上的分析,我们可以看出当雷射光照射在三个gap上时,量测到的THz讯号,相当于是我们分别将雷射光照射在三个gap上,所量测到的THz讯号之间的干涉,此结果与理论相符合。在比较单一天线和天线阵列的讯号,我们得到天线阵列讯号强度约为单一天线讯号的2.18倍(SI-GaAs),此结果也与理论算出来的3倍相近。
  We have studied the characteristics of photoconductive antenna array. Because the photoconductive antenna is easily saturated when the power of pumping light is higher, we fabricate photoconductive antenna array to solve this problem. We have fabricated photoconductive antenna array successfully. By the interference of the THz radiation of each antenna of our designed photoconductive antenna array, we enhance the THz radiation in the far field. And we can get higher amplitude of electric field of THz radiation when the antenna is unsaturated. We proved and simulated the far field of the THz radiation of photoconductive antenna array. By comparing the calculation of program with the measured result by us, we can get enhanced effect on THz signal obviously. Besides we compare the measured result of single antenna with that of our designed photoconductive antenna array.
We use SI-GaAs and GaAs:As+ (50, 100, 200 KeV) for the substrate. The dosage of the implanted As+ of GaAs:As+ is 5E15, and after implanting, we anneal the substrate in 600□C for 30 mins. By using positive photo-resistance (AZ6112) suiting small line-width (the thick of positive photo-resistance is 12000 Å), and plating metals (Ni:Ge:Au = 300Å:700 Å:1000Å), we fabricated photoconductive antenna array successfully.
  By using a passive-mode-locked(SBR) Ti Sapphire Laser (λ=800nm) generating 130fs optical pulses, we use photoconductive antenna with lock-in amplifier and actuator to measure THz. And we use the fiber set up by our-self to guide the light into photoconductive antenna array. To analyze the THz radiation in time domain by comparing the signal of single gap with that of multi gap, we can see that the signal of multi gap is the interference of the signal of each single gap. This measured result matches the result of the theory. By comparing the signal of single antenna and antenna array, we find that the signal of antenna array is 2.18 times the signal of single antenna (SI-GaAs). This result is similar to the calculated result by the theory (3times).
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009224554
http://hdl.handle.net/11536/76748
显示于类别:Thesis


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