Photoconductive connected array

A novel solution for pulsed terahertz radiation

Conference Paper (2016)
Author(s)

Alessandro Garufo (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Giorgio Carluccio (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Nuria Llombart Juan (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Andrea Neto (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Research Group
Tera-Hertz Sensing
DOI related publication
https://doi.org/10.1109/IRMMW-THz.2016.7758938 Final published version
More Info
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Publication Year
2016
Language
English
Research Group
Tera-Hertz Sensing
Pages (from-to)
1-1
ISBN (print)
978-1-4673-8486-5
ISBN (electronic)
978-1-4673-8485-8
Event
IRMMW-THz 2016 (2016-09-25 - 2016-09-30), Copenhagen, Denmark
Downloads counter
203

Abstract

A novel design of an optically pumped THz photoconductive source in array configuration is presented. The proposed solution is based on the exploitation of the ultrawide band properties of connected antenna arrays. The photoconductive elements of the array are excited by an array of microlenses which splits and focuses the laser beam onto the active areas of the connected array. An ad-hoc DC biasing solution is introduced in order to properly bias the array elements; thus, realizing a connected array of photoconductive sources. If needed, the array can be used to illuminate a dielectric lens, which collimates the radiated THz electromagnetic field in the boresight direction. The proposed solution allows to achieve a high radiated power on a large bandwidth in the terahertz regime when the photoconductive material is illuminated by a laser operating in the pulsed mode. The proposed solution is therefore suitable and effective to be employed in terahertz time-domain systems.