Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5489129 | Journal of Crystal Growth | 2017 | 17 Pages |
Abstract
GaN fins are 3D architectures elongated in one direction parallel to the substrate surface. They have the geometry of walls with a large height to width ratio as well as small footprints. When appropriate symmetry directions of the GaN buffer are used, the sidewalls are formed by non-polar {1Â 1Â â2Â 0} planes, making the fins particularly suitable for many device applications like LEDs, FETs, lasers, sensors or waveguides. The influence of growth parameters like temperature, pressure, V/III ratio and total precursor flow on the fin structures is analyzed. Based on these results, a 2-temperature-step-growth was developed, leading to fins with smooth side and top facets, fast vertical growth rates and good homogeneity along their length as well as over different mask patterns. For the core-shell growth of fin LED heterostructures, the 2-temperature-step-growth shows much smoother sidewalls and less crystal defects in the InGaN QW and p-GaN shell compared to structures with cores grown in just one step. Electroluminescence spectra of the 2-temperature-step-grown fin LED are demonstrated.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Condensed Matter Physics
Authors
Jana Hartmann, Frederik Steib, Hao Zhou, Johannes Ledig, Lars Nicolai, Sönke Fündling, Tilman Schimpke, Adrian Avramescu, Tansen Varghese, Achim Trampert, Martin StraÃburg, Hans-Jürgen Lugauer, Hergo-Heinrich Wehmann, Andreas Waag,