We will be undertaking essential maintenance work on Apollo's infrastructure on Sunday 26 July 2026 between 14:00 and 17:00 BST, therefore expect intermittent access to Apollo's content and search interface during that time.
Repository logo
 

Photocurrent detection of radially polarized optical vortex with hot electrons in Au/GaN

Published version
Peer-reviewed

Loading...
Thumbnail Image

Change log

Abstract

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.

Description

Journal Title

Applied Physics Letters

Conference Name

Journal ISSN

0003-6951
1077-3118

Volume Title

120

Publisher

AIP Publishing

Rights and licensing

Except where otherwised noted, this item's license is described as Attribution 4.0 International
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)