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Final LDRD report : enhanced spontaneous emission rate in visible III-nitride LEDs using 3D photonic crystal cavities.
Author(s) -
Arthur Fischer,
Ganapathi Subramania,
Anthony Coley,
YunJu Lee,
Qiming Li,
George T. Wang,
Ting Luk,
Daniel Koleske,
Kristine W. Fullmer
Publication year - 2009
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/993884
Subject(s) - photonic crystal , optoelectronics , materials science , photoluminescence , spontaneous emission , photonics , wavelength , light emitting diode , dielectric , emission spectrum , photon , yablonovite , band gap , semiconductor , optics , photonic integrated circuit , spectral line , physics , laser , astronomy
The fundamental spontaneous emission rate for a photon source can be modified by placing the emitter inside a periodic dielectric structure allowing the emission to be dramatically enhanced or suppressed depending on the intended application. We have investigated the relatively unexplored realm of interaction between semiconductor emitters and three dimensional photonic crystals in the visible spectrum. Although this interaction has been investigated at longer wavelengths, very little work has been done in the visible spectrum. During the course of this LDRD, we have fabricated TiO{sub 2} logpile photonic crystal structures with the shortest wavelength band gap ever demonstrated. A variety of different emitters with emission between 365 nm and 700 nm were incorporated into photonic crystal structures. Time-integrated and time-resolved photoluminescence measurements were performed to measure changes to the spontaneous emission rate. Both enhanced and suppressed emission were demonstrated and attributed to changes to the photonic density of states.

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