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Investigation of antenna-coupled Nb 5 N 6 microbolometer THz detector with substrate resonant cavity.

Authors :
Tu X
Jiang C
Xiao P
Kang L
Zhai S
Jiang Z
Feng Su R
Jia X
Zhang L
Chen J
Wu P
Source :
Optics express [Opt Express] 2018 Apr 02; Vol. 26 (7), pp. 8990-8997.
Publication Year :
2018

Abstract

Fabricating resonant cavities with conventional methods to improve the coupling efficiency of a detector in the terahertz (THz) region is difficult for the wavelength is too long. Here, we propose a solution by using the substrate cavity effect given that the substrate wavelength and thickness of the preparation device are in the same order. The planar dipole antenna-coupled Nb <subscript>5</subscript> N <subscript>6</subscript> microbolometers with different substrate thicknesses were fabricated. The interference effect of the substrate cavity on the optical voltage response of the detector is analyzed experimentally and theoretically. The experimental results show that the optical response of the detector is determined by the length of the substrate cavity. Thus, the THz devices with different detection frequencies can be designed by changing the substrate cavity length. Furthermore, on the basis of this substrate cavity effect, an asymmetric coupled Fabry-Pérot (FP) cavity is constituted by simply placing a movable metallic planar mirror at the backside of the Si substrate. The incident THz radiation on the Nb <subscript>5</subscript> N <subscript>6</subscript> microbolometer can be effectively manipulated by changing the substrate-mirror distance to modulate the phase relation between the reflect wave and the incident wave. The distinct radiation control can be observed, and the experiments can be well explained by numerically analyzing the responsivity dynamics that highlights the role of the FP cavity effect during radiation. All of the results discussed here can be extended to a broad range of frequency and other type of THz detectors.

Details

Language :
English
ISSN :
1094-4087
Volume :
26
Issue :
7
Database :
MEDLINE
Journal :
Optics express
Publication Type :
Academic Journal
Accession number :
29715857
Full Text :
https://doi.org/10.1364/OE.26.008990