When material parameters are fixed, optical responses of nanoresonators are dictated by their shapes and dimensions. Therefore, both designing nanoresonators and understanding their underlying physics would benefit from a theory that predicts the evolutions of resonance modes of open systems—the so-called quasinormal modes (QNMs)—as the nanoresonator shape changes. QNM perturbation theories (PTs) are one ideal choice. However, existing theories developed for tiny material changes are unable to provide accurate perturbation corrections for shape deformations. By introducing a novel extrapolation technique, we develop a rigorous QNM PT that faithfully represents the electromagnetic fields in perturbed domain. Numerical tests performed on the ...
This authoritative book introduces and summarizes the latest models and skills required to design an...
We provide a self-consistent electromagnetic theory of the coupling between dipole emitters and diss...
We investigate the effect of mechanical strain on the dynamics of thin MoS2 nanodrum resonators. Usi...
Optical resonators are widely used in modern photonics. Their spectral response and temporal dynamic...
International audienceOpen phononic systems including resonators radiating inside an unbounded mediu...
Many nanophotonic devices rely on the excitation of photonic resonances to enhance light-matter inte...
International audienceThe interaction of light with photonic resonators is determined by the eigenmo...
It is well known that the quasinormal modes (or resonant states) of photonic structures can be assoc...
Nanoelectromechanical systems (NEMS) couple the dynamics of electrons to vibrating nanostructures su...
International audienceWe propose a novel hybrid method for accurately and efficiently analyzing micr...
We study the quality factor variation of three dimensional Metal-Insulator-Metal nanoresonators when...
Large-scale, dense arrays of plasmonic nanodisks on low-modulus, high-elongation elastomeric substra...
International audienceA mechanical resonator based on torsional resonance has been fabricated in our...
We derive a closed-form expression that accurately predicts the peak frequency shift and broadening ...
Determining the electromagnetic field response of photonic and plasmonic resonators is a formidable ...
This authoritative book introduces and summarizes the latest models and skills required to design an...
We provide a self-consistent electromagnetic theory of the coupling between dipole emitters and diss...
We investigate the effect of mechanical strain on the dynamics of thin MoS2 nanodrum resonators. Usi...
Optical resonators are widely used in modern photonics. Their spectral response and temporal dynamic...
International audienceOpen phononic systems including resonators radiating inside an unbounded mediu...
Many nanophotonic devices rely on the excitation of photonic resonances to enhance light-matter inte...
International audienceThe interaction of light with photonic resonators is determined by the eigenmo...
It is well known that the quasinormal modes (or resonant states) of photonic structures can be assoc...
Nanoelectromechanical systems (NEMS) couple the dynamics of electrons to vibrating nanostructures su...
International audienceWe propose a novel hybrid method for accurately and efficiently analyzing micr...
We study the quality factor variation of three dimensional Metal-Insulator-Metal nanoresonators when...
Large-scale, dense arrays of plasmonic nanodisks on low-modulus, high-elongation elastomeric substra...
International audienceA mechanical resonator based on torsional resonance has been fabricated in our...
We derive a closed-form expression that accurately predicts the peak frequency shift and broadening ...
Determining the electromagnetic field response of photonic and plasmonic resonators is a formidable ...
This authoritative book introduces and summarizes the latest models and skills required to design an...
We provide a self-consistent electromagnetic theory of the coupling between dipole emitters and diss...
We investigate the effect of mechanical strain on the dynamics of thin MoS2 nanodrum resonators. Usi...