Abstract

The dispersion of a coupled resonator optical waveguide made of photonic crystal mode-gap cavities is pronouncedly asymmetric. This asymmetry cannot be explained by the standard tight binding model.We show that the fundamental cause of the asymmetric dispersion is the inherent dispersive cavity mode profile; i.e., the mode wave function depends on the driving frequency, not the eigenfrequency. This occurs because the photonic crystal cavity resonances do not form a complete set. We formulate a dispersive mode coupling model that accurately describes the asymmetric dispersion without introducing any new free parameters.

URL

https://www.osapublishing.org/ol/abstract.cfm?uri=ol-40-19-4488

Authors

S. Sokolov, E. Yüce, J. Lian, S. Combrié, A. De Rossi, and A. P. Mosk

Year of publication

2015

Date published

09/2015

Journal

Opt. Lett.

Volume

40

Pages

4488-4491

Keywords

microcavities, Photonic crystal waveguides