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  4. M-Plane GaN/InAlN Multiple Quantum Wells in Core-Shell Wire Structure for UV Emission
 
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research article

M-Plane GaN/InAlN Multiple Quantum Wells in Core-Shell Wire Structure for UV Emission

Durand, Christophe
•
Bougerol, Catherine
•
Carlin, Jean-Francois  
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2014
Acs Photonics

We report on the epitaxial growth of high-quality core-shell nonpolar m-plane GaN/InAlN multiple quantum wells (MQWs) on the sidewall facets of c-oriented hexagonal GaN wires. Pseudomorphic growth without generation of threading dislocations has been established for planar GaN/InAlN (In = 15%) MQWs grown on m-GaN substrates, although m-plane InAlN epilayers cannot be grown perfectly lattice-matched to GaN along the two in-plane directions. Calculations based on elasticity theory indicate that the significant amount of strain oriented along the c-axis is the likely factor favoring the formation of cracks along this direction. For the core-shell wire geometry, such cracks are not observed, leading to high structural quality MQWs. A significant UV emission centered around 3.7 eV at room temperature with a strong polarization perpendicular to the wire axis is observed for those core-shell wires, which is consistent with k.p method calculations, proving the absence of quantum confined Stark effect on nonpolar m-plane surfaces. These excellent optical features reported in the UV spectral range are attributed to the defect-free nature of the GaN/InAlN MQWs, thereby opening promising opportunities for the realization of UV light emitters.

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Type
research article
DOI
10.1021/ph400031x
Web of Science ID

WOS:000335802700007

Author(s)
Durand, Christophe
•
Bougerol, Catherine
•
Carlin, Jean-Francois  
•
Rossbach, Georg  
•
Godel, Florian
•
Eymery, Joel
•
Jouneau, Pierre-Henri
•
Mukhtarova, Anna
•
Butte, Raphael  
•
Grandjean, Nicolas  
Date Issued

2014

Publisher

Amer Chemical Soc

Published in
Acs Photonics
Volume

1

Issue

1

Start page

38

End page

46

Subjects

GaN

•

InAlN

•

m-plane nonpolar growths

•

nitride wires

•

core-shell heterostructures

•

multiple quantum wells

•

UV emission

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LASPE  
Available on Infoscience
June 16, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/104378
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