Photocurrent detection of radially polarized optical vortex with hot electrons in Au/GaN
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Publication Date
2022Journal Title
Applied Physics Letters
ISSN
0003-6951
Publisher
AIP Publishing
Volume
120
Issue
20
Pages
202101-202101
Type
Article
This Version
VoR
Metadata
Show full item recordCitation
Hou, Y., Kappers, M., Jin, C., & Oliver, R. (2022). Photocurrent detection of radially polarized optical vortex with hot electrons in Au/GaN. Applied Physics Letters, 120 (20), 202101-202101. https://doi.org/10.1063/5.0094454
Abstract
<jats:p> We report a GaN based metal–semiconductor–metal (MSM) infrared photodetector enabled with azimuthally distributed sub-wavelength gratings fabricated on one of the working electrodes. Under illumination, hot electron transfer is introduced by the plasmonic resonance in the infrared waveband formed at the interface of Au/GaN. Without the help of using any external optical polarizers, the device is able to detect radial polarization vortices in the form of photocurrents with a prescribed response spectrum. The detector exhibits a 10%–90% rise and fall time of 0.9 ms under modulated light, much faster than that of conventional ultraviolet GaN MSM photodetectors based on the band edge absorption. This work provides a viable way to measure spatially variant polarization beams with a compact plasmonic photodetectors fabricated from wide bandgap semiconductors. </jats:p>
Sponsorship
Engineering and Physical Sciences Research Council (EP/M010589/1)
EPSRC (via University of Sheffield) (unknown)
EPSRC (via University College London (UCL)) (EP/T028475/1)
Identifiers
External DOI: https://doi.org/10.1063/5.0094454
This record's URL: https://www.repository.cam.ac.uk/handle/1810/337214
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