A "Janus" double sided mid-IR photodetector based on a MIM architecture
Abstract
We present a mid-IR ( 8.3 m) quantum well infrared photodetector (QWIP) fabricated on a mid-IR transparent substrate, allowing photodetection with illumination from either the front surface or through the substrate. The device is based on a 400 nm-thick GaAs/AlGaAs semiconductor QWIP heterostructure enclosed in a metal-insulator-metal (MIM) cavity and hosted on a mid-IR transparent ZnSe substrate. Metallic stripes are symmetrically patterned by e-beam lithography on both sides of the active region. The detector spectral coverage spans from m to m by changing the stripe width L - from L = 1.0 m to L = 1.3 m - thus frequency-tuning the optical cavity mode. Both micro-FTIR passive optical characterizations and photocurrent measurements of the two-port system are carried out. They reveal a similar spectral response for the two detector ports, with an experimentally measured T of 200K.
Cite
@article{arxiv.2108.02429,
title = {A "Janus" double sided mid-IR photodetector based on a MIM architecture},
author = {Mario Malerba and Mathieu Jeannin and Stefano Pirotta and Lianhe Li and Alexander Giles Davies and Edmund Linfield and Adel Bousseksou and Jean-Michel Manceau and Raffaele Colombelli},
journal= {arXiv preprint arXiv:2108.02429},
year = {2021}
}
Comments
Copyright 2021 Mario Malerba, Mathieu Jeannin, Stefano Pirotta, Lianhe Li, Alexander Giles Davies, Edmund Linfield, Adel Bousseksou, Jean-Michel Manceau and Raffaele Colombelli. This article is distributed under a Creative Commons Attribution (CC BY) License. The following article has been submitted to APL Photonics. After it is published, it will be found at https://aip.scitation.org/journal/app