EEMCS EPrints Service
|
||||||||||||||||||||||||||||||||||||
|
Hiremath, K.R. and Stoffer, R. and Hammer, M.
(2004)
Multimode circular integrated optical microresonators: Coupled mode theory modeling.
In: 9th Annual Symposium IEEE/LEOS Benelux, 2-3 December 2004, Ghent, Belgium.
pp. 79-82.
IEEE Lasers and Electro-Optics Society.
ISBN 9076546061
Full text available as:
Official URL: http://www.leosbenelux.org/index.php?id=45 AbstractA frequency domain model of multimode circular microresonators for ?lter applications in integrated optics is investigated. Analytical basis modes of 2D bent waveguides or curved interfaces are combined with modes of straight channels in a spatial coupled mode theory framework. Free of fitting parameters, the model allows to predict quite efficiently the spectral response of the microresonators. It turns out to be sufficient to take only a few dominant cavity modes into account. Comparisons of these simulations with computationally more expensive rigorous numerical calculations show a satisfactory agreement
Export this item as: To correct this item please ask your editor Repository Staff Only: edit this item |
||||||||||||||||||||||||||||||||||||