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Dependence of extrinsic loss on group velocity in photonic crystal waveguides

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Authors

O'Faolain, Liam
White, Thomas
O'Brien, David
Yuan, Xiadong
Settle, Michael D.
Krauss, Thomas F.

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Optical Society of America

Abstract

We examine the effects of disorder on propagation loss as a function of group velocity for W1 photonic crystal (PhC) waveguides. Disorder is deliberately and controllably introduced into the photonic crystal by pseudo-randomly displacing the holes of the photonic lattice. This allows us to clearly distinguish two types of loss. Away from the band-edge and for moderately slow light (group velocity c/20-c/30) loss scales sub-linearly with group velocity, whereas near the band-edge, reflection loss increases dramatically due to the random and local shift of the band-edge. The optical analysis also shows that the random fabrication errors of our structures, made on a standard e-beam lithography system, are below 1 nm root mean square.

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Optics Express

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