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Conference paper

Direct numerical and experimental determination of group index dispersion in photonic crystal waveguides

In Proceedings of Spie — 2005
From

Nanophotonics, Department of Photonics Engineering, Technical University of Denmark1

Department of Photonics Engineering, Technical University of Denmark2

Systems, Department of Photonics Engineering, Technical University of Denmark3

We report on direct numerical calculations and experimental measurements of the group-index dispersion in a photonic crystal waveguide fabricated in silicon-on-insulator material. The photonic crystal is defined by a triangular arrangement of holes and the waveguide is carved out by introducing a one-row line defect.

Both the numerical and experimental methods are based on the time of flight approach for an optical pulse. An increase of the group index by approximately 45 times (from 4 to 155) has been observed when approaching the cutoff of the fundamental photonic bandgap mode. Numerical 2D and 3D simulations of pulse dynamics in the waveguide made by the time-domain method shows excellent agreement with measured data in most of the band.

These group index values in a photonic crystal waveguide are to the best of our knowledge the largest numbers reported so far by direct tracking of pulse propagation.

Language: English
Publisher: SPIE
Year: 2005
Proceedings: Optics and Optoelectronics
ISBN: 0819459577 and 9780819459572
Types: Conference paper
ORCIDs: Lavrinenko, Andrei and Frandsen, Lars Hagedorn

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