Optical extinction due to intrinsic structural variations of photonic crystals
Abstract
Unavoidable variations in size and position of the building blocks of photonic crystals cause light scattering and extinction of coherent beams. We present a new model for both 2 and 3-dimensional photonic crystals that relates the extinction length to the magnitude of the variations. The predicted lengths agree well with our new experiments on high-quality opals and inverse opals, and with literature data analyzed by us. As a result, control over photons is limited to distances up to 50 lattice parameters (m) in state-of-the-art structures, thereby impeding large-scale applications such as integrated circuits. Conversely, scattering in photonic crystals may lead to novel physics such as Anderson localization and non-classical diffusion.
Cite
@article{arxiv.physics/0406052,
title = {Optical extinction due to intrinsic structural variations of photonic crystals},
author = {A. Femius Koenderink and Ad Lagendijk and Willem L. Vos},
journal= {arXiv preprint arXiv:physics/0406052},
year = {2007}
}
Comments
10 pages, 3 figures. Changes include: added Lagendijk as author; simplified and generalized the text