Enhanced Light Extraction in Tunnel Junction Enabled Top Emitting UV LEDs
arXiv:1512.02260 · doi:10.7567/APEX.9.052102
Abstract
The efficiency of ultra violet LEDs is critically limited by the absorption losses in p-type and metal layers. In this work, surface roughening based light extraction structures are combined with tunneling-based top-contacts to realize highly efficient top-side light extraction efficiency in UV LEDs. Surface roughening of the top n-type AlGaN contact layer is demonstrated using self-assembled Ni nano-clusters as etch mask. The top surface roughened LEDs were found to enhance external quantum efficiency by over 40% for UV LEDs with a peak emission wavelength of 326 nm. The method described here can enable highly efficient UV LEDs without the need for complex manufacturing methods such as flip chip bonding.
10 pages, 4 figures, submitted
References in corpus (3)
Cited by in corpus (5)
- MBE-grown 232-270 nm Deep-UV LEDs using Monolayer thin Binary GaN/AlN quantum heterostructures
- Design and Demonstration of Ultra Wide Bandgap AlGaN Tunnel Junctions
- Tunnel-injected sub-260 nm ultraviolet light emitting diodes
- Reflective Metal/Semiconductor Tunnel Junctions for Hole Injection in AlGaN UV LEDs
- Design of P-Type Cladding Layers for Tunnel-Injected UVA Light Emitting Diodes