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7.5% Optical-to-terahertz conversion efficiency offered by photoconductive emitters with three-dimensional plasmonic contact electrodes
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7.5% Optical-to-terahertz conversion efficiency offered by photoconductive emitters with three-dimensional plasmonic contact electrodes

Shang-Hua Yang, Mohammad R. Hashemi, Christopher W. BerryMona Jarrahi
IEEE Transactions on Terahertz Science and Technology, 卷.4(5), 頁碼.575-581
2014

摘要

Nanoscale devices photoconductive antenna plasmonics terahertz source ultrafast photoconductor Radiation Electrical and Electronic Engineering
We present a photoconductive terahertz emitter that incorporates three-dimensional plasmonic contact electrodes to offer record high optical-to-terahertz power conversion efficiencies. By use of three-dimensional plasmonic contact electrodes the majority of photocarriers are generated within nanoscale distances from the photoconductor contact electrodes and drifted to the terahertz radiating antenna in a sub-picosecond time-scale to efficiently contribute to terahertz radiation. We experimentally demonstrate 105 ~μ W of broadband terahertz radiation in the 0.1-2 THz frequency range in response to a 1.4 mW optical pump, exhibiting a record high optical-to-terahertz power conversion efficiency of 7.5%. © 2014 IEEE.

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