Publication | Open Access
Optimizing nanophotonic cavity designs with the gravitational search algorithm
10
Citations
17
References
2013
Year
Optical MaterialsGravitational Search AlgorithmEngineeringCavity QedMetamaterialsPhotonic CrystalsQuantum MetamaterialsOptical PropertiesNanophotonicsPhotonicsPhysicsPhotonic MaterialsDevice DesignLight–matter InteractionPhotonic DeviceApplied PhysicsPhotonic StructuresL3 CavitiesPhotonic Crystal Cavities
Designing photonic crystal cavities with high quality factors and low mode volumes is of great importance for maximizing interactions of light and matter in metamaterials. Previous work on photonic crystal cavities has revealed dramatic improvements in performance by fine-tuning the device design. In L3 cavities, slight shifts of the holes on the edge of the cavity have been found to greatly increase quality factors without significantly altering the mode volume. Here we demonstrate utilizing a nature inspired search algorithm to efficiently explore a large parameter space. The results converge upon a new cavity model with a high quality factor to mode volume ratio (Q/V = 798,000 (λ/n)(-3)).
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