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Tail-suppressed THz photocurrent by a bi-polar photoconductive antenna fabricated on semi-insulating GaAs
Conference paper

Tail-suppressed THz photocurrent by a bi-polar photoconductive antenna fabricated on semi-insulating GaAs

Anup Kumar Sahoo, Hsiao-Hua Wu, Yu-Cheng Hong, Yu-Chen Chang, Osamu Wada and Ci-Ling Pan
International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz, Vol.2019-September, 8874507
09/2019

Abstract

Energy Engineering and Power Technology Electrical and Electronic Engineering
We designed and fabricated bi-polar type photoconductive antenna (PCA) for efficient generation of broadband terahertz (THz) radiation. The falling time of overlayingly generated photocurrent from bi-polar PCA can achieve 200 fs via superimposing two primarily opposite polarity photocurrent pulses having falling time of 100 ps with time delay of 200 fs. The simulation results disclosed a possibility to shift the central frequency from 0.1 to 1.3 THz and enhance the THz power by twice in the range 1.5-3.3 THz by using low cost substrate with long carrier life time such as semi-insulating gallium arsenide (SI-GaAs).

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