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High-efficiency photoconductive terahertz antennas based on high-aspect ratio plasmonic electrodes
Conference paper

High-efficiency photoconductive terahertz antennas based on high-aspect ratio plasmonic electrodes

Shang-Hua Yang, Mohammed R. Hashemi, Christopher W. Berry and Mona Jarrahi
IEEE Antennas and Propagation Society, AP-S International Symposium (Digest), pp.902-903
09/2014

Abstract

Electrical and Electronic Engineering
We present a high-efficiency photoconductive antenna that incorporates three-dimensional plasmonic contact electrodes. Three-dimensional plasmonic contact electrodes facilitate ultrafast transport of the majority of photocarriers to the contact electrodes, enhancing the device quantum efficiency significantly. Under an optical pump power of 1.4 mW, we experimentally demonstrate 105 μW broadband terahertz radiation in 0.1-2 THz frequency range, exhibiting a record-high optical-to-terahertz conversion efficiency of 7.5%.

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