DOE OSTI · 2371069
Tunnel junction-enabled monolithically integrated GaN micro-light emitting transistor
Abstract
GaN/InGaN microLEDs are a very promising technology for next-generation displays. Switching control transistors and their integration are key components in achieving high-performance, efficient displays. Monolithic integration of microLEDs with GaN switching devices provides an opportunity to control microLED output power with capacitive (voltage)-controlled rather than current-controlled schemes. This approach can greatly reduce system complexity for the driver circuit arrays while maintaining device opto-electronic performance. In this work, we demonstrate a 3-terminal GaN micro-light emitting transistor that combines a GaN/InGaN blue tunneling-based microLED with a GaN n-channel FET. Further, the integrated device exhibits excellent gate control, drain current control, and optical emission control. This work provides a promising pathway for future monolithic integration of GaN FETs with microLED to enable fast switching, high-efficiency microLED display and communication systems.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Rahman, Sheikh Ifatur, Awwad, Mohammad, Joishi, Chandan, Jamal-Eddine, Zane, Gunning, Brendan, Armstrong, Andrew Michael, Rajan, Siddharth. 2024-05-30. Tunnel junction-enabled monolithically integrated GaN micro-light emitting transistor. https://doi.org/10.1063/5.0213300
Cite the original work for its findings. Save a collection to share your selection of sources.