期刊
OPTICS AND SPECTROSCOPY
卷 130, 期 3, 页码 137-149出版社
PLEIADES PUBLISHING INC
DOI: 10.1134/S0030400X2203002X
关键词
Group III-nitride semiconductor; semipolar; light-emitting diodes; InGaN; GaN quantum well
资金
- Prince Mohammad Bin Fahd University
LEDs based on group III-nitride semiconductors have traditionally used the polar plane, but semipolar and nonpolar orientations offer advantages such as reducing internal electric field and higher indium incorporation. Semipolar LEDs demonstrate important properties and have bright prospects for green/yellow LEDs and lasers. Comprehensive studies are needed to fully harness the advantages of semipolar orientations.
Light-emitting diodes (LEDs) based on group III-nitride semiconductors (GaN, AlN, and InN) are crucial elements for solid-state lighting and visible light communication applications. The most widely used growth plane for group III-nitride LEDs is the polar plane (c-plane), which is characterized by the presence of a polarization-induced internal electric field in heterostructures. It is possible to address long-standing problems in group III-nitride LEDs, by using semipolar and nonpolar orientations of GaN. In addition to the reduction in the polarization-induced internal electric field, semipolar orientations potentially offer the possibility of higher indium incorporation, which is necessary for the emission of light in the visible range. This is the preferred growth orientation for green/yellow LEDs and lasers. The important properties such as high output power, narrow emission linewidth, robust temperature dependence, large optical polarization ratio, and low-efficiency droop are demonstrated with semipolar LEDs. To harness the advantages of semipolar orientations, comprehensive studies are required. This review presents the recent progress on the development of semipolar InGaN/GaN quantum well LEDs. Semipolar InGaN LED structures on bulk GaN substrates, sapphire substrates, free-standing GaN templates, and on Silicon substrates are discussed including the bright prospects of group III-nitrides.
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