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Opt Express ; 16(5): 3136-45, 2008 Mar 03.
Article in English | MEDLINE | ID: mdl-18542400

ABSTRACT

2D photonic crystal (2DPC) structures consisting in 2D silicon nanopillar arrays in silica are investigated. The main motivation of this work lies in that 2D rod arrays should be easily combined with refractive structures (e. g. micro-wire waveguides), unlike 2DPC consisting in hole lattices. Such an association is expected to lead to both new functionalities and larger scale integration. In this paper, we study the loss mechanism for non degenerated Bloch modes located at Gamma-point in a 2DPC slab constituted by a square lattice of silicon rods in silica. For such modes, we show that the quality factor is mainly governed by the lateral losses. To further inhibit the lateral losses, a photonic heterostructure is used. 3D FDTD calculations show that quality factors of 4000 are achieved. To reduce the vertical losses, the 2DPC heterostructure is associated with a vertical Bragg mirror, thus resulting in very high quality factors (>40000).


Subject(s)
Crystallization/methods , Models, Chemical , Nanostructures/chemistry , Nanostructures/ultrastructure , Optics and Photonics/instrumentation , Silicon/chemistry , Transducers , Computer Simulation , Computer-Aided Design , Equipment Design , Equipment Failure Analysis , Finite Element Analysis , Vibration
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