International audienceWe 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
We introduce a numerical method, based on Transformation Optics, and aimed to predict the optomechan...
Le contrôle de l'interaction entre la lumière et la matière est d'une importance capitale dans de no...
Hybrid systems made of quantum emitters and plasmonic nanoresonators offer a unique platform to impl...
International audienceWe propose a novel hybrid method for accurately and efficiently analyzing micr...
When material parameters are fixed, optical responses of nanoresonators are dictated by their shapes...
We propose a semianalytical formalism based on a time-domain resonant-mode-expansion theory to analy...
We propose a semianalytical formalism based on a time-domain resonant-mode-expansion theory to analy...
Optical resonators are widely used in modern photonics. Their spectral response and temporal dynamic...
Nanophotonique des milieux complexes : nouveaux outils de modélisation vers de nouveaux phénomènes o...
Many nanophotonic devices rely on the excitation of photonic resonances to enhance light-matter inte...
Determining the electromagnetic field response of photonic and plasmonic resonators is a formidable ...
International audienceOctave-spanning optical frequency combs are especially interesting in optical ...
This paper describes the use of modal analysis in understanding the optical response of a nanoantenn...
L'idée de l'expansion modale en électromagnétisme découle de la recherche sur les résonateurs électr...
We present an optical mode solver for a whispering gallery resonator coupled to an adjacent arbitrar...
We introduce a numerical method, based on Transformation Optics, and aimed to predict the optomechan...
Le contrôle de l'interaction entre la lumière et la matière est d'une importance capitale dans de no...
Hybrid systems made of quantum emitters and plasmonic nanoresonators offer a unique platform to impl...
International audienceWe propose a novel hybrid method for accurately and efficiently analyzing micr...
When material parameters are fixed, optical responses of nanoresonators are dictated by their shapes...
We propose a semianalytical formalism based on a time-domain resonant-mode-expansion theory to analy...
We propose a semianalytical formalism based on a time-domain resonant-mode-expansion theory to analy...
Optical resonators are widely used in modern photonics. Their spectral response and temporal dynamic...
Nanophotonique des milieux complexes : nouveaux outils de modélisation vers de nouveaux phénomènes o...
Many nanophotonic devices rely on the excitation of photonic resonances to enhance light-matter inte...
Determining the electromagnetic field response of photonic and plasmonic resonators is a formidable ...
International audienceOctave-spanning optical frequency combs are especially interesting in optical ...
This paper describes the use of modal analysis in understanding the optical response of a nanoantenn...
L'idée de l'expansion modale en électromagnétisme découle de la recherche sur les résonateurs électr...
We present an optical mode solver for a whispering gallery resonator coupled to an adjacent arbitrar...
We introduce a numerical method, based on Transformation Optics, and aimed to predict the optomechan...
Le contrôle de l'interaction entre la lumière et la matière est d'une importance capitale dans de no...
Hybrid systems made of quantum emitters and plasmonic nanoresonators offer a unique platform to impl...