Rigorous sufficient conditions for index-guided mode in microstructured dielectric waveguides
Abstract
We derive a sufficient condition for the existence of index-guided modes in a very general class of dielectric waveguides, including photonic-crystal fibers (arbitrary periodic claddings, such as ``holey fibers''), anisotropic materials, and waveguides with periodicity along the propagation direction. This condition provides a rigorous guarantee of cutoff-free index-guided modes in any such structure where the core is formed by increasing the index of refraction (e.g. removing a hole). It also provides a weaker guarantee of guidance in cases where the refractive index is increased ``on average'' (precisely defined). The proof is based on a simple variational method, inspired by analogous proofs of localization for two-dimensional attractive potentials in quantum mechanics.
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Cite
@article{arxiv.0803.2850,
title = {Rigorous sufficient conditions for index-guided mode in microstructured dielectric waveguides},
author = {Karen K. Y. Lee and Yehuda Avniel and Steven G. Johnson},
journal= {arXiv preprint arXiv:0803.2850},
year = {2008}
}
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15 pages