Issue 4, 2020

Anisotropic properties of pipe-GaN distributed Bragg reflectors

Abstract

We report here a simple and robust process to convert periodic Si-doped GaN/undoped-GaN epitaxial layers into a porous-GaN/u-GaN distributed Bragg reflector (DBR) structure and demonstrate its material properties in a high-reflectance epitaxial reflector. Directional pipe-GaN layers with anisotropic optical properties were formed from n+-GaN : Si layers in a stacked structure through a lateral and doping-selective electrochemical etching process. Central wavelengths of the polarized reflectance spectra were measured to be 473 nm and 457 nm for the pipe-GaN reflector when the direction of the linear polarizer was along and perpendicular to the pipe-GaN structure. The DBR reflector with directional pipe-GaN layers has the potential for a high efficiency polarized light source and vertical cavity surface emitting laser applications.

Graphical abstract: Anisotropic properties of pipe-GaN distributed Bragg reflectors

Article information

Article type
Paper
Submitted
24 Nov 2019
Accepted
23 Mar 2020
First published
23 Mar 2020
This article is Open Access
Creative Commons BY-NC license

Nanoscale Adv., 2020,2, 1726-1732

Anisotropic properties of pipe-GaN distributed Bragg reflectors

C. Wu, Y. Chen, C. Wang, G. Shiu, C. Huang, H. Liu, H. Chen, Y. Lin, C. Lin and J. Han, Nanoscale Adv., 2020, 2, 1726 DOI: 10.1039/C9NA00743A

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