The development of uniform GaN micro-pyramids and platelets via selective area growth is a critical step toward advancing III-nitride device technologies, particularly for micro-light-emitting diode applications. This work investigates the origins of morphological non-uniformity in micro-pyramids and micro-platelets grown by metal-organic chemical vapor deposition (MOCVD). We observe that a direct one-step growth approach leads to significant growth rate inhomogeneity across arrays. To shed light on this issue, we examine the mechanisms driving non-uniformity and explore process modifications aimed at mitigating these effects. Building on these insights, we propose a controlled multi-step growth strategy that combines sequen-tial growth and thermal treatment phases. This approach is demonstrated to enhance surface morphology and structural regularity. The work contributes to the broader objective of enabling scalable, high-precision GaN microstructure fabrication for next-generation optoelectronic applications.
@article{arxiv.2510.19697,
title = {High Uniformity GaN Micro-pyramids and Platelets by Selective Area Growth},
author = {Changhao Li and Vitaly Z. Zubialevich and Peter J. Parbrook and Brian Corbett and Zhi Li},
journal= {arXiv preprint arXiv:2510.19697},
year = {2026}
}