Singh Abhishek, Prabhu S S
Opt Express. 2015 Jan 26;23(2):1529-35. doi: 10.1364/OE.23.001529.
We report here fabrication of interdigitated photoconductive antenna (iPCA) terahertz (THz) emitters based on plasmonic electrode design. Novel design of this iPCA enables it to work without microlens array focusing, which is otherwise required for photo excitation of selective photoconductive regions to avoid the destructive interference of emitted THz radiation from oppositely biased regions. Benefit of iPCA over single active region PCA is, photo excitation can be done at larger area hence avoiding the saturation effect at higher optical excitation density. The emitted THz radiation power from plasmonic-iPCAs is ~2 times more than the single active region plasmonic PCA at 200 mW optical excitation, which will further increase at higher optical powers. This design is expected to reduce fabrication cost of photoconductive THz sources and detectors.
我们在此报告基于等离子体电极设计制造的叉指式光电导天线(iPCA)太赫兹(THz)发射器。这种iPCA的新颖设计使其能够在无需微透镜阵列聚焦的情况下工作,而在选择性光电导区域的光激发中,微透镜阵列聚焦是避免来自反向偏置区域发射的太赫兹辐射产生相消干涉所必需的。iPCA相对于单有源区PCA的优势在于,光激发可以在更大面积上进行,从而避免了在高光激发密度下的饱和效应。在200 mW光激发下,等离子体-iPCA发射的太赫兹辐射功率比单有源区等离子体PCA高出约2倍,在更高光功率下这一数值还会进一步增加。预计这种设计将降低光电导太赫兹源和探测器的制造成本。