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1.
Opt Express ; 17(11): 8795-804, 2009 May 25.
Article in English | MEDLINE | ID: mdl-19466129

ABSTRACT

Far-field distributions of GaN-based photonic crystal (PhC) film-transferred light-emitting diodes (FT-LEDs) were investigated. The thickness of the device is about 840 nm. The emission wavelength is around 520 nm. The PhC region is a square lattice with a/lambda around 0.5. Angular-resolved measurements in the Gamma-X and Gamma-M directions were made in the polarized-resolved manner. Guided mode extraction behavior in agreement with the two-dimensional free-photon band calculation was observed. In addition, the pseudo-TM behavior for the non-collinearly coupled modes was observed. The azimuthal-mapping of the angular-resolved spectra revealed the evolution of the collinearly and the non-collinearly coupled modes. Furthermore, the light enhancement of approximately 2.7x and the collimation angle about 102.3 degrees were achieved.


Subject(s)
Gallium/chemistry , Lighting/instrumentation , Membranes, Artificial , Semiconductors , Color , Crystallization/methods , Materials Testing , Photons
2.
Opt Express ; 16(10): 7285-94, 2008 May 12.
Article in English | MEDLINE | ID: mdl-18545434

ABSTRACT

Angular distribution of light diffracted out of the plane of two-dimensional photonic crystals (PhC) has been studied in the azimuthal direction with a specially designed waveguide structure. The optical images of the light extraction patterns from the guided photoluminescence light are obtained with laser excitation in the center of the annual structure made on GaN multilayer. For increasing lattice constant, symmetric patterns with varying number of petals according to the symmetry of the PhC are observed. The appearance and disappearance of the petals can be explained using the Ewald construction in the reciprocal space. The dependence of light extraction on the lattice constant and orientation, and incident angle are investigated.


Subject(s)
Gallium/chemistry , Light , Optics and Photonics , Photochemistry/methods , Anisotropy , Crystallization/methods , Equipment Design , Lasers , Models, Theoretical , Nanoparticles , Photons , Scattering, Radiation
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