Efficient hybrid method for the modal analysis of optical microcavities and nanoresonators
DURUFLÉ, M.
Modélisation et simulation de la propagation des ondes fondées sur des mesures expérimentales pour caractériser des milieux géophysiques et héliophysiques et concevoir des objets complexes [MAKUTU]
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Modélisation et simulation de la propagation des ondes fondées sur des mesures expérimentales pour caractériser des milieux géophysiques et héliophysiques et concevoir des objets complexes [MAKUTU]
Language
en
Article de revue
This item was published in
Journal of the Optical Society of America. A Optics, Image Science, and Vision. 2021-07-26, vol. 38, n° 8, p. 1224
Optical Society of America
English Abstract
We propose a novel hybrid method for accurately and efficiently analyzing microcavities and nanoresonators. The method combines the marked spirit of quasinormal mode expansion approaches, e.g., analyticity and physical ...Read more >
We propose a novel hybrid method for accurately and efficiently analyzing microcavities and nanoresonators. The method combines the marked spirit of quasinormal mode expansion approaches, e.g., analyticity and physical insight, with the renowned strengths of real-frequency simulations, e.g., accuracy and flexibility. Real-and complex-frequency simulations offer a complementarity between accuracy and computation speed, opening new perspectives for challenging inverse design of nanoresonators.Read less <
Origin
Hal imported