Microcavity enhancement vs Auger recombination in variable thickness type-II superlattices in resonant cavity mid-infrared light emitting diodes

Author:

Schrock K. N.1ORCID,Montealegre D. A.1ORCID,Dai W.1,Bellus M. Z.2,Nichols L. M.2ORCID,Prineas J. P.12ORCID

Affiliation:

1. Department of Physics and Astronomy, University of Iowa 1 , Iowa City, Iowa 52242, USA

2. Firefly Photonics, BioVentures Center 2 , Coralville, Iowa 52241, USA

Abstract

In this study, we investigate the tradespace between the improvement of mid-infrared light-emitting diode efficiency through microcavity enhancement vs reduction of Auger recombination for different W-superlattice thicknesses. Several sample designs are modeled and then grown and fabricated to test the tradespace at different W-superlattice thicknesses down to the quantum well limit. In a half-cavity, with a single reflector from the top metal contact, intermediate thickness W-superlattices gave the highest efficiencies, outperforming those in the W-quantum well limit across the entire measured current range. Experimentally, we report wallplug efficiencies of 0.4% for a room temperature 3.2 μm device. W-superlattices of intermediate thickness were also found to be optimal for a full-cavity device with a bottom distributed Bragg reflector added. The resonant full cavity did strongly improve the peak spectral radiance, with a measured increase of four to five times for a 3.6 μm device, and a value that is >250 times larger than previously reported.

Funder

United States Air Force

Publisher

AIP Publishing

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