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Enhanced excitonic emission efficiency in porous GaN.


ABSTRACT: We investigate the optical properties of porous GaN films of different porosities, focusing on the behaviors of the excitonic features in time-integrated and time-resolved photoluminescence. A substantial enhancement of both excitonic emission intensity and recombination rate, along with insignificant intensity weakening under temperature rise, is observed in the porous GaN films. These observations are in line with (i) the local concentration of electric field at GaN nanoparticles and pores due to the depolarization effect, (ii) the efficient light extraction from the nanoparticles. Besides, the porosification enlarges the surface of the air/semiconductor interface, which further promotes the extraction efficiency and suppresses non-radiative recombination channels. Our findings open a way to increasing the emission efficiency of nanophotonic devices based on porous GaN.

SUBMITTER: Ngo TH 

PROVIDER: S-EPMC6202416 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Enhanced excitonic emission efficiency in porous GaN.

Ngo Thi Huong TH   Gil Bernard B   Shubina Tatiana V TV   Damilano Benjamin B   Vezian Stéphane S   Valvin Pierre P   Massies Jean J  

Scientific reports 20181025 1


We investigate the optical properties of porous GaN films of different porosities, focusing on the behaviors of the excitonic features in time-integrated and time-resolved photoluminescence. A substantial enhancement of both excitonic emission intensity and recombination rate, along with insignificant intensity weakening under temperature rise, is observed in the porous GaN films. These observations are in line with (i) the local concentration of electric field at GaN nanoparticles and pores due  ...[more]

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