A hole accelerator for InGaN/GaN light-emitting diodes
Zhang, Z. H.
Tan, S. T.
Sun, X. W.
Demir, H. V.
Please cite this item using this persistent URLhttp://hdl.handle.net/11693/12679
Applied Physics Letters
The quantum efficiency of InGaN/GaN light-emitting diodes (LEDs) has been significantly limited by the insufficient hole injection, and this is caused by the inefficient p-type doping and the low hole mobility. The low hole mobility makes the holes less energetic, which hinders the hole injection into the multiple quantum wells (MQWs) especially when a p-type AlGaN electron blocking layer (EBL) is adopted. In this work, we report a hole accelerator to accelerate the holes so that the holes can obtain adequate kinetic energy, travel across the p-type EBL, and then enter the MQWs more efficiently and smoothly. In addition to the numerical study, the effectiveness of the hole accelerator is experimentally shown through achieving improved optical output power and reduced efficiency droop for the proposed InGaN/GaN LED. (C) 2014 AIP Publishing LLC.
Zhang, Z. H., Liu, W., Tan, S. T., Ji, Y., Wang, L., Zhu, B., ... & Sun, X. W. (2014). A hole accelerator for InGaN/GaN light-emitting diodes. Applied Physics Letters, 105(15), 153503.