DocumentCode :
85783
Title :
Analysis on the Light Extraction Efficiency of GaN-Based Nanowires Light-Emitting Diodes
Author :
Qingyang Yue ; Kang Li ; Fanmin Kong ; Jia Zhao ; Wei Li
Author_Institution :
Sch. of Inf. Sci. & Eng., Shandong Univ., Jinan, China
Volume :
49
Issue :
8
fYear :
2013
fDate :
Aug. 2013
Firstpage :
697
Lastpage :
704
Abstract :
With the development of single-photon-sources of ultra-efficient light extraction, nanowire structures, with embedded quantum wells, present unprecedented opportunity to enhance the light extraction efficiency (LEE) of light emitting diodes (LEDs). In this paper, the finite-difference time-domain method is carried out in graphics processing units to explore mechanisms by which nanowire arrays can effectively improve LEE. The results show that the LEE strongly depends on the radius of the nanowire and the distance between the nanowires. On analyzing the emitted power distribution of the dipole in the semiconductor nanowire, the LEE of LEDs agrees with guided power portion of the total power with respect to the radius of the nanowire and the distance between the nanowires. The guided mode has an important role in enhancing the LEE of LEDs. The free-space mode, however, becomes the whispering gallery mode which is not important in LEE. The LEE obtains the maximum at the mode cutoff radius. The height is also discussed in this paper. With the optimized parameters, ~11 times increment in LEE is achieved.
Keywords :
III-V semiconductors; finite difference time-domain analysis; gallium compounds; light emitting diodes; nanowires; semiconductor quantum wells; whispering gallery modes; wide band gap semiconductors; GaN; LED; emitted power distribution; finite-difference time-domain method; free-space mode; gallium nitride-based nanowire light-emitting diodes; graphic processing; light extraction efficiency; quantum wells; semiconductor nanowire; single-photon-sources; whispering gallery mode; Finite difference methods; Gallium nitride; Light emitting diodes; Nanowires; Power distribution; Substrates; Time-domain analysis; Finite-difference time-domain (FDTD); LEDs; guided mode; light extraction efficiency (LEE); nanowires;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2013.2265167
Filename :
6522856
Link To Document :
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